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Nature Reviews Materials

@natrevmats.nature.com
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A journal publishing reviews and commentaries across all aspects of materials science. Posts from the editors, @giulia-pacc.bsky.social, arianevartanian.bsky.social and Charlotte Allard. www.nature.com/natrevmats

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Nature Reviews Materials @natrevmats.nature.com · 23h
ICYMI: New online! Polymer–lipid nanoparticles deliver and activate CAR T cells in vivo
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Polymer–lipid nanoparticles deliver and activate CAR T cells in vivo
Nature Reviews Materials, Published online: 29 September 2026; doi:10.1038/s41578-026-00970-yAn article in Nature Materials presents a polymer–lipid nanoparticle that simultaneously functions as an mRNA carrier and a T cell activator, enabling in vivo generation of functional chimeric antigen receptor T cells.
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Nature Reviews Materials @natrevmats.nature.com · 23h
ICYMI: New online! Bringing immunology into AI-guided lipid nanoparticle design
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Bringing immunology into AI-guided lipid nanoparticle design
Nature Reviews Materials, Published online: 29 September 2026; doi:10.1038/s41578-026-00968-6Advances in artificial intelligence have fundamentally changed how lipid nanoparticles are designed, enabling a transition from high-throughput screening to autonomous, data-driven discovery. As the field matures, however, a critical blind spot emerges: the immunological dimension of lipid nanoparticle function has yet to be integrated into artificial intelligence-driven pipelines.
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Nature Reviews Materials @natrevmats.nature.com · 23h
ICYMI: New online! Spectrally engineered materials for personal thermoregulation
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Spectrally engineered materials for personal thermoregulation
Nature Reviews Materials, Published online: 29 September 2026; doi:10.1038/s41578-026-00962-ySpectrally engineered textile materials enable low-energy personal thermoregulation, offering a promising strategy to improve thermal comfort and human health under diverse environmental conditions. This Review discusses the links between environmental conditions, spectral properties and multiscale structures, and outlines design principles, representative materials and future opportunities for personal thermoregulation.
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Nature Reviews Materials @natrevmats.nature.com · 25/09/2026
ICYMI: New online! Electrolyte design for future batteries
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Electrolyte design for future batteries
Nature Reviews Materials, Published online: 24 September 2026; doi:10.1038/s41578-026-00958-8Electrolyte design remains a central challenge in battery research. This Review explains how electrolytes’ molecular environments alter ion energetics, electrode potentials, interphase evolution, transport behaviour and thermal safety, establishing rational electrolyte design principles for future batteries beyond conventional empirical formulation screening.
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Nature Reviews Materials @natrevmats.nature.com · 22/09/2026
ICYMI: New online! Phase-change materials for thermal management
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Phase-change materials for thermal management
Nature Reviews Materials, Published online: 21 September 2026; doi:10.1038/s41578-026-00959-7Phase-change materials can store a large amount of latent heat within nearly isothermal phase transitions, making them ideal for thermal management. To enable system-level integration, this Review presents a multiscale design framework for optimizing the thermal properties of phase-change materials from the molecular and material levels to the module and device levels.
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Nature Reviews Materials @natrevmats.nature.com · 22/09/2026
ICYMI: New online! Advances and technical challenges in mono-material plastics design for sustainability
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Advances and technical challenges in mono-material plastics design for sustainability
Nature Reviews Materials, Published online: 21 September 2026; doi:10.1038/s41578-026-00961-zMono-material products, which are made up of one polymer type derived from a single monomer or comonomer combination, may help to solve the sustainability problems associated with multimaterial plastic products. This Review discusses advances in engineering processes towards mono-materials and the remaining technical challenges surrounding mono-materialization.
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Nature Reviews Materials @natrevmats.nature.com · 18/09/2026
ICYMI: New online! Pressure as a design tool for thermoelectricity in Bi2Te3
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Pressure as a design tool for thermoelectricity in Bi2Te3
Nature Reviews Materials, Published online: 17 September 2026; doi:10.1038/s41578-026-00967-7An article in Communications Materials reports a high-pressure and high-temperature processing strategy that permanently switches the carrier polarity of Bi2Te3 while also enhancing its thermoelectric and mechanical properties.
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Nature Reviews Materials @natrevmats.nature.com · 18/09/2026
ICYMI: New online! Materials design and integration strategies for next-generation smart batteries
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Materials design and integration strategies for next-generation smart batteries
Nature Reviews Materials, Published online: 17 September 2026; doi:10.1038/s41578-026-00957-9Smart batteries require materials that can regulate degradation, sense hidden internal states and support decision-oriented management. This Review discusses responsive materials, battery-integrated sensing architectures and data-assisted interpretation strategies for developing cell-compatible, manufacturable and sustainable smart batteries.
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Nature Reviews Materials @natrevmats.nature.com · 17/09/2026
ICYMI: New online! Reconciling flexibility and power generation in Bi2Te3
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Reconciling flexibility and power generation in Bi2Te3
Nature Reviews Materials, Published online: 16 September 2026; doi:10.1038/s41578-026-00966-8An article in Nature Communications shows that suppressing antisite defects in single-crystal Bi2Te3 through Se alloying simultaneously enhances mechanical flexibility and thermoelectric performance.
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Nature Reviews Materials @natrevmats.nature.com · 17/09/2026
ICYMI: New online! The power of confined disorder
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The power of confined disorder
Nature Reviews Materials, Published online: 16 September 2026; doi:10.1038/s41578-026-00964-wAn article in Science Advances shows that confined copper ion dynamics in TiCu5Se3 induce strong anharmonic lattice vibrations and wave-like thermal transport, achieving high thermoelectric efficiency.
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Nature Reviews Materials @natrevmats.nature.com · 16/09/2026
ICYMI: New online! A new funnel for thermoelectric materials discovery
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A new funnel for thermoelectric materials discovery
Nature Reviews Materials, Published online: 15 September 2026; doi:10.1038/s41578-026-00965-9An article in npj Computational Materials presents a thermoelectric inverse design framework that combines generative artificial intelligence with hierarchical first principles screening to identify previously unknown thermoelectric candidates with promising predicted performance.
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Nature Reviews Materials @natrevmats.nature.com · 03/09/2026
Our September issue is live! www.nature.com/natrevmats/v...
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Nature Reviews Materials @natrevmats.nature.com · 02/09/2026
ICYMI: New online! Clinical translation of permeation enhancers
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Clinical translation of permeation enhancers
Nature Reviews Materials, Published online: 01 September 2026; doi:10.1038/s41578-026-00954-yPermeation enhancers are transforming strategies for overcoming biological barriers in therapeutic delivery. This Perspective critically evaluates their mechanisms, clinical evidence, translational challenges and regulatory considerations and outlines emerging opportunities to enable broader therapeutic application across diverse delivery routes.
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Nature Reviews Materials @natrevmats.nature.com · 27/08/2026
Join this Nature Conference at Princeton University this October to hear the latest electron microscopy instrumentation and methods driving progress in the physical and life sciences! go.nature.com/4h0zAME
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4th Frontiers in Electron and Scanning Probe Microscopy for the Physical and Life Sciences
Advances in electron microscopy instrumentation and methods continue to drive progress in the physical and life sciences. The 4th edition of this conference will bring together researchers from physic...
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Nature Reviews Materials @natrevmats.nature.com · 26/08/2026
ICYMI: New online! How single-atom catalysts reframe stability as adaptability
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How single-atom catalysts reframe stability as adaptability
Nature Reviews Materials, Published online: 25 August 2026; doi:10.1038/s41578-026-00960-0Single-atom catalysts were initially developed to maximize metal utilization, but they have evolved into a powerful platform for interrogating the fundamental principles of catalysis. Recent studies reveal that their active sites continuously adapt through interactions with supports, defects and reactants. These findings challenge the conventional view of catalyst stability as structural persistence, redefining it as controlled adaptability and opening the way to catalysts that sense, switch and evolve with their reaction environment.
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Nature Reviews Materials @natrevmats.nature.com · 25/08/2026
ICYMI: New online! Thermo-responsive materials for rechargeable batteries
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Thermo-responsive materials for rechargeable batteries
Nature Reviews Materials, Published online: 24 August 2026; doi:10.1038/s41578-026-00952-0Safety presents a central challenge in developing high-energy rechargeable batteries. Thermally responsive polymers provide an effective strategy for active safety regulation: upon heating, they undergo intrinsic structural transformations that suppress ion and electron transport, interrupt electrochemical reactions and mitigate thermal runaway, enabling safer and more reliable battery technology for next-generation energy storage.
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Nature Reviews Materials @natrevmats.nature.com · 21/08/2026
ICYMI: New online! A hierarchical fibre to trap and sense microplastics
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A hierarchical fibre to trap and sense microplastics
Nature Reviews Materials, Published online: 20 August 2026; doi:10.1038/s41578-026-00956-wAn article in Advanced Materials presents a tunicate nanocellulose and MXene fibre that can capture and detect trace levels of microplastics, inspired by the pollen-collecting structures on the legs of bees.
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Nature Reviews Materials @natrevmats.nature.com · 21/08/2026
ICYMI: New online! Engineered coacervates as emerging liquid biomaterials
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Engineered coacervates as emerging liquid biomaterials
Nature Reviews Materials, Published online: 20 August 2026; doi:10.1038/s41578-026-00950-2Although liquid–liquid phase separation (LLPS) is a fundamental biological principle, the potential of LLPS-driven engineered coacervates remains largely untapped. This Review reframes coacervates as powerful liquid biomaterials, detailing how their unique properties can be harnessed for diverse biomedical applications.
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Nature Reviews Materials @natrevmats.nature.com · 14/08/2026
ICYMI: New online! Engineering disorder for luminous glasses
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Engineering disorder for luminous glasses
Nature Reviews Materials, Published online: 13 August 2026; doi:10.1038/s41578-026-00955-xAn article in Angewandte Chemie reports a deep eutectic solvent strategy that suppresses crystallization in hybrid metal halide glasses while preserving the local structural order required for efficient and tunable luminescence.
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Nature Reviews Materials @natrevmats.nature.com · 14/08/2026
ICYMI: New online! The importance of fit-for-purpose structure characterization in autonomous laboratories
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The importance of fit-for-purpose structure characterization in autonomous laboratories
Nature Reviews Materials, Published online: 13 August 2026; doi:10.1038/s41578-026-00953-zAdvances in robotic experimentation and data-driven decision-making have enabled efficient, autonomous synthesis of bespoke materials structures; yet the role of structure characterization remains underexamined. The information content of structural measurements fundamentally limits what autonomous laboratories can learn, motivating adaptive, structure-aware characterization strategies to achieve materials discovery grounded in atomic-scale understanding.
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Nature Reviews Materials @natrevmats.nature.com · 04/08/2026
ICYMI: New online! Engineered interfaces in electronic materials for energy-efficient computing
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Engineered interfaces in electronic materials for energy-efficient computing
Nature Reviews Materials, Published online: 03 August 2026; doi:10.1038/s41578-026-00949-9As electronic devices downscale, the energy efficiency of computing is increasingly limited by interfacial transport processes. This Perspective outlines how engineered electronic-material interfaces control switching, charge and heat transport, and reliability and discusses interface design for logic, memory, interconnects and thermal management, whereas identifying predictive modelling needs for interface design.
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Nature Reviews Materials @natrevmats.nature.com · 28/07/2026
ICYMI: New online! Closed-loop battery recycling through cathode resynthesis
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Closed-loop battery recycling through cathode resynthesis
Nature Reviews Materials, Published online: 27 July 2026; doi:10.1038/s41578-026-00947-xClosed-loop battery recycling depends on converting variable black mass into cathode precursors that can match commercial materials. This Review links leachate chemistry, precursor impurity, stoichiometry and morphology to resynthesized cathode performance, and outlines design principles for hydrometallurgical cathode resynthesis.
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Nature Reviews Materials @natrevmats.nature.com · 23/07/2026
ICYMI: New online! Nanoscale additive manufacturing of metals, alloys, and metal oxides
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Nanoscale additive manufacturing of metals, alloys, and metal oxides
Nature Reviews Materials, Published online: 22 July 2026; doi:10.1038/s41578-026-00945-zThe properties of nanoscale metallic systems can be amplified through nanostructuring to achieve unique performance in mechanics, robotics, catalysis and photonics. This Review highlights the key nanoscale additive manufacturing techniques used to produce such metallic systems and their distinct next-generation applications.
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Nature Reviews Materials @natrevmats.nature.com · 21/07/2026
ICYMI: New online! Engineering bamboo as a multiscale platform for carbon-negative materials
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Engineering bamboo as a multiscale platform for carbon-negative materials
Nature Reviews Materials, Published online: 20 July 2026; doi:10.1038/s41578-026-00943-1Bamboo is a fast-growing lignocellulosic resource that combines high biomass productivity with the ability to sequester atmospheric carbon in long-lived materials. This Review frames bamboo as a multiscale platform for carbon-conscious materials design, linking hierarchical structure, bond-selective chemistry, processing, durability and life-cycle accounting to identify when bamboo-derived products can store carbon, displace emissions and deliver credible climate benefits sustainably at scale.
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Nature Reviews Materials @natrevmats.nature.com · 15/07/2026
ICYMI: New online! Replace the vitreous permanently
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Replace the vitreous permanently
Nature Reviews Materials, Published online: 14 July 2026; doi:10.1038/s41578-026-00948-wVitreous substitutes remain a fundamental unmet need in regenerative medicine: current tamponade agents, gases and silicone oil, address immediate surgical challenges but neglect the long-term functional role of the tissue they replace. A paradigm shift towards durable, biomimetic hydrogel substitutes is not a distant ambition, but a clinical necessity.
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Nature Reviews Materials @natrevmats.nature.com · 15/07/2026
ICYMI: New online! Rethinking energy density limits in dielectric materials
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Rethinking energy density limits in dielectric materials
Nature Reviews Materials, Published online: 14 July 2026; doi:10.1038/s41578-026-00946-yDielectrics with high energy storage density are essential for device miniaturization and system integration. As advances in materials fabrication technologies push the breakdown strength of dielectric materials ever closer to their theoretical limits, greater emphasis should be placed on polarization enhancement for further improving the energy storage performance.
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Nature Reviews Materials @natrevmats.nature.com · 09/07/2026
ICYMI: New online! From screening to generative design in nucleic acid delivery
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From screening to generative design in nucleic acid delivery
Nature Reviews Materials, Published online: 08 July 2026; doi:10.1038/s41578-026-00944-0The discovery of delivery materials is shifting from empirical screening to predictive, artificial intelligence-guided design. Harder problems, including the simultaneous optimization of competing properties and delivery beyond the liver, are now pushing the field further, from screening materials to generating them against predefined property targets.
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Nature Reviews Materials @natrevmats.nature.com · 09/07/2026
ICYMI: New online! Understanding and engineering electrocatalyst durability
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Understanding and engineering electrocatalyst durability
Nature Reviews Materials, Published online: 08 July 2026; doi:10.1038/s41578-026-00937-zElectrocatalyst durability is a central challenge limiting the large-scale deployment of electrochemical energy technologies, despite major advances in nanocatalyst design and activity. This Review examines the thermodynamic and kinetic principles governing catalyst stability and highlights emerging strategies to understand and engineer stable, high-performance electrocatalysts for practical energy applications.
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Nature Reviews Materials @natrevmats.nature.com · 04/07/2026
ICYMI: New online! Irregular metamaterial networks
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Irregular metamaterial networks
Nature Reviews Materials, Published online: 03 July 2026; doi:10.1038/s41578-026-00936-0Metamaterials derived from irregular networks promise remarkable properties but require a new type of network science. This Perspective establishes a foundation built on networks endowed with geometry and physics for describing, analysing, predicting and ultimately designing metamaterials with controlled irregularity and tailored functionalities.
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Nature Reviews Materials @natrevmats.nature.com · 30/06/2026
ICYMI: New online! MXene-based bioabsorbable bandage speeds up diabetic wound repair
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MXene-based bioabsorbable bandage speeds up diabetic wound repair
Nature Reviews Materials, Published online: 29 June 2026; doi:10.1038/s41578-026-00941-3An article in Science Advances reports a fully bioabsorbable, glucose-powered electronic bandage that uses MXene-based electrodes to harvest biochemical energy and restore wound edge fields in diabetic tissues.
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Nature Reviews Materials @natrevmats.nature.com · 27/06/2026
ICYMI: New online! Transparent and flexible MXene antennas take shape
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Transparent and flexible MXene antennas take shape
Nature Reviews Materials, Published online: 26 June 2026; doi:10.1038/s41578-026-00940-4An article in Science Advances reports a MXene grid architecture that delivers a conformal, transparent and efficient antenna platform suitable for both wearable devices and flexible metasurfaces.
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Nature Reviews Materials @natrevmats.nature.com · 27/06/2026
ICYMI: New online! MXene electrodes enable real-time visualization of plant electrical signals
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MXene electrodes enable real-time visualization of plant electrical signals
Nature Reviews Materials, Published online: 26 June 2026; doi:10.1038/s41578-026-00942-2An article in Nature Electronics introduces a low-drift, high-density electrode array based on a dry MXene–pressure-sensitive adhesive composite that enables real-time visualization of environment-stimulated electrical waves in plants.
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Nature Reviews Materials @natrevmats.nature.com · 25/06/2026
ICYMI: New online! Two-dimensional materials need a shared experimental memory
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Two-dimensional materials need a shared experimental memory
Nature Reviews Materials, Published online: 24 June 2026; doi:10.1038/s41578-026-00938-yThere is no lack of possibilities for two-dimensional materials science; however, there is a lack of organized memory. Connecting what materials have been synthesized, how they were made and how they relate to computational predictions could shape future discoveries.
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Nature Reviews Materials @natrevmats.nature.com · 12/06/2026
ICYMI: New online! Demand-side innovation is the priority for decarbonizing materials
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Demand-side innovation is the priority for decarbonizing materials
Nature Reviews Materials, Published online: 12 June 2026; doi:10.1038/s41578-026-00934-2Global industrial emissions from bulk materials continue to rise despite climate policies. This Perspective uses an illustrative resource-constrained model of a national transition to net zero to show that supply-side climate mitigation strategies based on technological substitutions cannot deliver at the required scale; thus, policy priorities should shift towards electric recycling and participatory demand-side innovation.
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Nature Reviews Materials @natrevmats.nature.com · 11/06/2026
ICYMI: New online! Designing advanced thermoelectrics
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Designing advanced thermoelectrics
Nature Reviews Materials, Published online: 11 June 2026; doi:10.1038/s41578-026-00931-5Progress towards high-performance thermoelectrics that convert waste heat into electricity remains constrained by the coupling of electrical and thermal transport. This Review synthesizes design principles exploiting the electronic structure and lattice dynamics, and it highlights physics-informed descriptors for AI-assisted discovery and design.
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Nature Reviews Materials @natrevmats.nature.com · 11/06/2026
ICYMI: New online! Trustworthy benchmarks for halide perovskite transistors
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Trustworthy benchmarks for halide perovskite transistors
Nature Reviews Materials, Published online: 10 June 2026; doi:10.1038/s41578-026-00935-1Halide perovskite transistors are advancing rapidly, yet reported mobility values remain highly sensitive to material properties, device physics and measurement protocols. Establishing reliable, reproducible and application-specific mobility metrics is essential for translating laboratory performance into credible device technologies.
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Nature Reviews Materials @natrevmats.nature.com · 04/06/2026
ICYMI: New online! From linear fixes to circular design: how polymer science has changed over the past decade
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From linear fixes to circular design: how polymer science has changed over the past decade
Nature Reviews Materials, Published online: 04 June 2026; doi:10.1038/s41578-026-00933-3Over the past decade, polymer science has shifted from precision synthesis to circular economy design. Breakthroughs in recycling, depolymerization and data-driven methods will be instrumental in designing polymers for sustainability within planetary constraints.
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Nature Reviews Materials @natrevmats.nature.com · 03/06/2026
ICYMI: New online! Nanofluidic ionic memory for next-generation computing
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Nanofluidic ionic memory for next-generation computing
Nature Reviews Materials, Published online: 03 June 2026; doi:10.1038/s41578-026-00919-1In the brain, memory involves release of neurotransmitters and transport of ions through nanoconfined channels. This Perspective discusses how nanofluidic memristors emulate this confined ion transport, highlighting the materials, design strategies and challenges involved in developing brain-inspired computing technologies.
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Nature Reviews Materials @natrevmats.nature.com · 02/06/2026
ICYMI: New online! Towards selective recycling technologies for complex plastic waste
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Towards selective recycling technologies for complex plastic waste
Nature Reviews Materials, Published online: 01 June 2026; doi:10.1038/s41578-026-00927-1Technologies for the selective recycling of heterogeneous and contaminated plastic waste streams are required to achieve a circular plastics economy. This Review surveys solvent-based recycling and depolymerization strategies towards the selective recycling of key types of plastic waste.
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Nature Reviews Materials @natrevmats.nature.com · 29/05/2026
ICYMI: New online! Molecular design for high-performance organic photosensitizers
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Molecular design for high-performance organic photosensitizers
Nature Reviews Materials, Published online: 29 May 2026; doi:10.1038/s41578-026-00930-6Organic photosensitizers enable diverse light-driven processes in biomedicine, energy, environment and synthetic photochemistry. This Review outlines molecular design strategies and photosensitization pathway modulation across type II, type I and oxygen-independent mechanisms and discusses machine-learning approaches for predictive and data-driven photosensitizer discovery.
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Nature Reviews Materials @natrevmats.nature.com · 27/05/2026
ICYMI: New online! Proteins for a sustainable future
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Proteins for a sustainable future
Nature Reviews Materials, Published online: 26 May 2026; doi:10.1038/s41578-026-00925-3At present, food manufacturing waste is repurposed mainly as low-value animal feed and soil additives. Roy Goswami et al. describe how closed-loop recycling of protein-rich wastes could provide bioplastics, packaging composites and materials for water purification, CO2 capture and renewable energy that support environmental stewardship.
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Nature Reviews Materials @natrevmats.nature.com · 23/05/2026
ICYMI: New online! Emerging materials and technologies towards in situ biomanufacturing
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Emerging materials and technologies towards in situ biomanufacturing
Nature Reviews Materials, Published online: 22 May 2026; doi:10.1038/s41578-026-00926-2Advances in material science have greatly extended the capabilities of 3D bioprinting. This Review discusses material design principles for in vivo biomanufacturing technologies and describes challenges and opportunities for the clinical translation of applications in tissue regeneration, wound repair, therapy and bioelectronics.
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Nature Reviews Materials @natrevmats.nature.com · 22/05/2026
ICYMI: New online! Cell state as a design variable in nanomedicine
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Cell state as a design variable in nanomedicine
Nature Reviews Materials, Published online: 21 May 2026; doi:10.1038/s41578-026-00932-4Nanomedicine has advanced through increasingly sophisticated particle design, yet generalizable rules for productive delivery remain scarce. This gap persists in part because the receiving cell is still treated as assay background rather than as an active design variable. Bringing cell state into the design space can help to translate context-dependent performance into more actionable and predictive rules for nanomedicine development.
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Nature Reviews Materials @natrevmats.nature.com · 13/05/2026
ICYMI: New online! A probe for the origin of superconductivity
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A probe for the origin of superconductivity
Nature Reviews Materials, Published online: 12 May 2026; doi:10.1038/s41578-026-00929-zAn article in Physical Review Letters describes how the momentum dependence of the superconducting pairing potential can be probed using the quantum twisting microscope.
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Nature Reviews Materials @natrevmats.nature.com · 13/05/2026
🌼Our May issue🌼: go.nature.com/433AUGi 🎗️Many-body entanglement in solid-state emitters 🎨Nanoprinted metasurfaces 🤖On-board electronics in microrobotics 🍑Nanozymes & Comments on 🔬Operando characterisation of rapid nanomaterial transformations 🌱Morphing matter for ecological restoration
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Nature Reviews Materials @natrevmats.nature.com · 12/05/2026
ICYMI: New online! A closed-loop automated lab boosts perovskite performance
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A closed-loop automated lab boosts perovskite performance
Nature Reviews Materials, Published online: 11 May 2026; doi:10.1038/s41578-026-00928-0A paper in Nature demonstrates a fully integrated, closed-loop system that links machine learning-guided molecular design with robotic device fabrication, enabling both the discovery of new passivation molecules and the reproducible manufacture of high-efficiency perovskite solar cells.
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Nature Reviews Materials @natrevmats.nature.com · 08/05/2026
ICYMI: New online! Tellurium-free thermoelectric materials and devices for low-temperature energy harvesting
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Tellurium-free thermoelectric materials and devices for low-temperature energy harvesting
Nature Reviews Materials, Published online: 07 May 2026; doi:10.1038/s41578-026-00923-5As alternatives to bismuth telluride, Te-free thermoelectric materials are emerging as promising candidates for low-temperature power generation. This Review discusses the design principles and future prospects of Te-free thermoelectric materials and devices across scales, from materials and interfaces to devices and system-level integration.
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Nature Reviews Materials @natrevmats.nature.com · 07/05/2026
ICYMI: New online! Reflections on the past decade of neuromorphic computing
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Reflections on the past decade of neuromorphic computing
Nature Reviews Materials, Published online: 05 May 2026; doi:10.1038/s41578-026-00924-4Artificial intelligence has outgrown the computers built to run it. Advances of the past decade have made clear that catching up is no longer a problem that any one discipline can solve. Can neuromorphic computing offer a way forward?
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Nature Reviews Materials @natrevmats.nature.com · 07/05/2026
ICYMI: New online! Kinetic pathways for joining metallurgically incompatible metals
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Kinetic pathways for joining metallurgically incompatible metals
Nature Reviews Materials, Published online: 05 May 2026; doi:10.1038/s41578-026-00922-6Joining dissimilar materials has long been limited by brittle intermetallics and mismatched mechanical properties, thereby constraining innovation across manufacturing. A newly identified kinetic regime enables bonding at sub-microsecond timescales, providing a bypass to conventional solid-state constraints and opening routes to integrate materials once considered incompatible.
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Nature Reviews Materials @natrevmats.nature.com · 28/04/2026
ICYMI: New online! Large-scale, mechanically robust bioinspired confined MXene nanocomposites
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Large-scale, mechanically robust bioinspired confined MXene nanocomposites
Nature Reviews Materials, Published online: 27 April 2026; doi:10.1038/s41578-026-00918-2MXene nanocomposites hold promise for aerospace, energy and biomedical applications, yet their macroscopic properties fall short of intrinsic MXene nanosheet performance. This Review discusses bioinspired confined assembly strategies that suppress void defects, yielding mechanically robust nanocomposites with scalable fabrication.
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