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Shalini Singh

@shaliniul.bsky.social
246 followers 79 following 9 posts

Associate Professor, University of Limerick Nanomaterials for Energy Conversion and Storage Research Group Website: www.singhresearchgroupul.org

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Shalini Singh @shaliniul.bsky.social · 12/12/2025
Just out in @acs.org ACS Energy Letters. A wonderful collaboration with Alex Ganose Andreu Cabot and Maria Ibáñez group!! Research supported by @researchireland.ie and @ambercentre.bsky.social @unioflimerick.bsky.social Well done Niraj! pubs.acs.org/doi/full/10....
pubs.acs.org
Layered Alkali-Copper Selenides: Deciphering Thermoelectric Properties and Reaction Pathways for Nanostructuring β-CsCu5Se3
Copper chalcogenides offer high charge mobility and low lattice thermal conductivity but suffer from structural instability due to dynamic Cu+ migration. Here, we report a colloidal hot-injection synt...
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Shalini Singh @shaliniul.bsky.social · 04/06/2025
New Publication from our group in Wiley Small Structures on the coolest hetero-nanostructures 😊 Well done Niraj. Funded by @researchireland.ie and @ambercentre.bsky.social #OpenAccess onlinelibrary.wiley.com/doi/10.1002/...
onlinelibrary.wiley.com
Mechanistic Insights and Strategic Assembly of Tailored Novel Oxide‐Phosphide Heterostructure Nanocrystals
Nanopopcorns: A facile, one-pot, self-regulated seed-mediated approach for the synthesis of heteronanocrystals has been developed. The mechanistic insights elucidated in this work offer a foundationa...
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Shalini Singh @shaliniul.bsky.social · 12/03/2025
Check out our latest article in Nano Letters on new alkali metal based chalcogenide Na-Cu-S (Synthesis via colloidal chemistry & insights into properties). @pubs.acs.org pubs.acs.org/doi/10.1021/...
pubs.acs.org
Ligand-Assisted Colloidal Synthesis of Alkali Metal-Based Ternary Chalcogenide: Nanostructuring and Phase Control in Na–Cu–S System
The development of sustainable and tunable materials is crucial for advancing modern technologies. We present a controlled synthesis of colloidal Na–Cu–S nanostructures. To overcome the reactivity difference between Na and Cu precursors toward chalcogens in a colloidal synthesis and to achieve metastable phase formation, we designed a single-source precursor for Cu and S. The decomposition of this precursor creates a Cu–S template into which Na ions diffuse to form metastable Na–Cu–S. By leveraging the reactivity of sulfur precursors, we synthesized Na3Cu4S4 (orthorhombic) and Na2Cu4S3 (monoclinic) nanocrystals with distinct properties. A mechanistic investigation reveals a predictive pathway previously unobserved in alkali-metal-based ternary chalcogenide systems. Further, computational DFT calculations demonstrate that Na3Cu4S4 exhibits metallic characteristics while Na2Cu4S3 is semiconducting, with an optimal band gap for photovoltaic applications. This research advances our understanding of ternary chalcogenide systems and establishes a framework for the rational design of complex nanomaterials.
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Shalini Singh @shaliniul.bsky.social · 27/02/2025
Lately I have started loving jigsaws- thanks to my very competitive toddler 😀 My lovely group gifted me this 100 piece puzzle in the Christmas hamper 🥰🥰 This is the most beautiful picture of @unioflimerick.bsky.social !!! My new lunch time pass time.
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Shalini Singh @shaliniul.bsky.social · 10/01/2025
Happy to be part of this amazing series of Women Scientists at the Forefront of Energy Research 2024 🙂
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Shalini Singh @shaliniul.bsky.social · 04/12/2024
Elevator selfie with my academic children after an intense group meeting. First long meeting for the newbies. #endoftheyearmadness #brainstormingsessions #firstpost
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