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Dmitry Baranov

@bardmital.bsky.social
498 followers 286 following 104 posts

Assistant Professor in Chemical Physics at Lund University, co-organizer NiNC, Early Career Board Nano Letters, interested in self-assembly and collective phenomena, he/him Web: dbaranov.com Work: www.chemphys.lu.se ORCID: orcid.org/0000-0001-6439-8132

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Dmitry Baranov @bardmital.bsky.social · 03/02/2026
Beautiful coda to beautiful work! Our study on nanocrystal superlattices in ACS Nano was featured on one of the covers @pubs.acs.org #MyACSCover Link to the paper (open access): pubs.acs.org/doi/full/10....
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ACS Publications @pubs.acs.org · 28/12/2025
Check out this article collection from Journal of Chemical Education, which illustrates how #MOFs have been integrated into classrooms and labs at various educational levels. Explore now: buff.ly/RMOElHU
Promotional graphic with the text: ‘Collection. Journal of Chemical Education. 2025 Nobel Prize in Chemistry Collection: Metal–Organic Frameworks (MOFs) in the Journal of Chemical Education. Read the Collection’
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Dmitry Baranov @bardmital.bsky.social · 19/12/2025
Week 51, ooof its been a while, busy end of the year! Lots of interesting papers came out in Nano Letters in the meantime. Here are a couple of highlights @pubs.acs.org #NanoLettBoardPick
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Dmitry Baranov @bardmital.bsky.social · 05/11/2025
Week 45, another couple of highlights from Nano Letters: an interesting photophysics study on molecular sensitization of lanthanide-doped (Yb,Er in NaYF4) core-shell nanoparticles and nanoprobe X-ray diffraction of ferroelectric domains in oxide perovskite BiFeO3 @pubs.acs.org #NanoLettBoardPick
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Dmitry Baranov @bardmital.bsky.social · 19/10/2025
Happy travelers from Lund arrived to Valencia for @nanoge.org MATSUS25 Fall meeting. Amazing weather +26 ☀️ Lots of exciting science ahead!
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Carolyn Bertozzi @carolynbertozzi.bskyverified.social · 15/10/2025
Nice perspective on the SynLlama paper by @thglab.bsky.social and coworkers recently published in ACS Cent Sci!
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Dmitry Baranov @bardmital.bsky.social · 13/10/2025
Nice editorial from @natrevmats.nature.com, made me think about the sustainability of research at a single lab level and broader community; looking forward to learn more from the materials circularity series. www.nature.com/articles/s41...
nature.com
The materials we make don’t just go ‘away’ - Nature Reviews Materials
Materials researchers are trained to innovate and create. But now that it is clear the world has too much stuff, what is the path forward?
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Dmitry Baranov @bardmital.bsky.social · 06/10/2025
Week 41, a couple of curious single-photon emitter studies appeared in a short timespan. One on circularly polarized single photons from Eu complex conjugated with gold helicoids, and another on good old fullerene as a single photon emitter. Check them out. @pubs.acs.org #NanoLettBoardPick
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Douglas Natelson @nanoscaleviews.bsky.social · 05/10/2025
🧪⚛️ Now with blog link goodness: ACS Webinar about plasmonics and "Illuminating the Nano Frontier" this coming Thursday. nanoscale.blogspot.com/2025/10/acs-...
nanoscale.blogspot.com
ACS National Nanotechnology Day webinar, Thursday Oct 9
Time for a rare bit of explicit self-promotion on this blog.  This coming Thursday, October 9, as part of the American Chemical Society 's a...
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Dmitry Baranov @bardmital.bsky.social · 25/09/2025
Week 39, the two highlights are the laser sculpting of nanoparticle-DNA assemblies and measuring nanocrystal rotations with correlated X-ray scattering @pubs.acs.org #NanoLettBoardPick
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Abhik Ghosh @abhikghosh.bsky.social · 13/09/2025
Friends! I’ll edit a special issue spotlighting queer researchers in porphyrin science – broadly defined – to be published in about a year. Queer PIs, students and postdocs and allies are all welcome! I am not free to reveal much more now until I have a rough headcount. Who’s in? Please repost! 🏳️‍🌈
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Dmitry Baranov @bardmital.bsky.social · 13/09/2025
So relatable. What are "knowing things is hard" and "checking is a practice" if not the beliefs and ideals of scientists, too? www.newyorker.com/magazine/202...
newyorker.com
The History of The New Yorker’s Vaunted Fact-Checking Department
Reporters engage in charm and betrayal; checkers are in the harm-reduction business.
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Santa Fe Institute @sfiscience.bsky.social · 12/09/2025
In cellular automata, simple rules create elaborate structures. Now researchers are working backward — starting with the result to learn the rules behind it. @georgemusser.com, SFI’s 2025 Journalism Fellow, explores how this could reshape computation and self-organization in Quanta:
quantamagazine.org
Self-Assembly Gets Automated in Reverse of ‘Game of Life’ | Quanta Magazine
In cellular automata, simple rules create elaborate structures. Now researchers can start with the structures and reverse-engineer the rules.
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Dmitry Baranov @bardmital.bsky.social · 28/08/2025
Welcome to Bluesky, Quinten! @q-akkerman.bsky.social!
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Communications Psychology @commspsychol.nature.com · 28/08/2025
Self-promotional language may attract readers but is discouraged in Communications Psychology. Because style matters in fostering credibility. www.nature.com/articles/s44...
nature.com
Credible is in - Communications Psychology
Self-promotional language may attract readers but is discouraged in Communications Psychology. Because style matters in fostering credibility.
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Dmitry Baranov @bardmital.bsky.social · 28/08/2025
Week 35, the two highlights are editorials: the first is the Nano Letters roadmap for the next 25 years of nanotechnology, and the second is an introduction to the Early Career Board, through which I am excited to support this outstanding journal. @pubs.acs.org #NanoLettBoardPick
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Dmitry Baranov @bardmital.bsky.social · 20/08/2025
A couple of things I've learned this week are that one can measure the net charge of single quantum dots by a combination of fluorescence microscopy and electrophoresis, and that acoustic phonons are size-dependent in perovskite quantum dots in glass. #NanoLettBoardPick
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European Commission @ec.europa.eu · 05/08/2025
🌍👩🏾‍🔬Backed by #ChooseEurope, which aims to attract top global talent, the programme will boost EU competitiveness & improve the well-being of its people. It will build on past success by scaling proven solutions & investing where it’s most needed. Learn more 💶 europa.eu/!w77nKY #ThePowerOfTogether
europa.eu
EU budget 2028-2034
The main aspects of the EU’s long-term budget for 2028-2034, its revenue and spending areas, as well as factsheets on key aspects are available on this page.
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Dmitry Baranov @bardmital.bsky.social · 07/08/2025
As part of the Early Career Board of Nano Letters, I’ll be occasionally sharing papers I enjoyed reading. This week, two single-nanocrystal studies caught my eye. One on flat PbSe nanocrystals of discrete thicknesses, and another on magic-sized CdSe clusters. #NanoLettBoardPick
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David Shiffman, Ph.D. 🦈 @whysharksmatter.bsky.social · 01/08/2025
My paper "Social media for fisheries science and management professionals: How to use Bluesky and Instagram, and why you should" is formally published in an issue. It's a how-to guide to using Bluesky, the first ever published in the scientific literature! 🧪🦑🌎🐟 academic.oup.com/fisheries/ar...
academic.oup.com
Social media for fisheries science and management professionals: How to use Bluesky and Instagram, and why you should
ABSTRACT. Social media tools have revolutionized how people communicate with one another. A 2018 paper in Fisheries summarized the use of Twitter, Facebook
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Dmitry Baranov @bardmital.bsky.social · 28/07/2025
Insightful about hidden complexity and multidimensional space of editorial decisions
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Kara McKinley @karalmckinley.bsky.social · 23/07/2025
A beautifully written piece on a terrible time www.science.org/content/arti...
science.org
My academic job offer was rescinded. I’ll keep going—but U.S. researchers are running out of road
Despite an uncertain future, this postdoc will “keep doing the science I love while I still have a bench”
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Dmitry Baranov @bardmital.bsky.social · 16/07/2025
The thread 🧵 ⬇️
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Dmitry Baranov @bardmital.bsky.social · 14/07/2025
Elemental doesn’t mean simple, quite the opposite. A couple of recent studies from Nano Letters @pubs.acs.org report mid-infrared photoluminescence and electronic striped phase in elemental tellurium. (Photo: images-of-elements.com/tellurium.php)
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Dmitry Baranov @bardmital.bsky.social · 12/07/2025
Fitting experimental data
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Dmitry Baranov @bardmital.bsky.social · 11/07/2025
Fellow supercrystal makers from the University of Tübingen have achieved robust supercrystals that don’t break easily and can be picked up with microscopic tweezers. 💎🔨🤩 ⚗️ Happy to have contributed supercrystals for comparison. Congratulations to the whole team! 🥳 pubs.acs.org/doi/10.1021/...
pubs.acs.org
Mechanically Robust Supercrystals from Antisolvent-Induced Assembly of Perovskite Nanocrystals
Ordered arrays of nanocrystals, called supercrystals, have attracted significant attention owing to the collective quantum effects arising from the coupling between neighboring nanocrystals. In particular, lead halide perovskite nanocrystals are widely used because of the combination of the optical properties and faceted cubic shape, which enables the formation of highly ordered supercrystals. The most frequently used method for the fabrication of perovskite supercrystals is based on the self-assembly of nanocrystals from solution via slow evaporation of the solvent. However, the supercrystals produced with this technique grow in random positions on the substrate. Moreover, they are mechanically soft due to the presence of organic ligands around the individual nanocrystals. Therefore, such supercrystals cannot be easily manipulated with microgrippers, which hinders their use in applications. In this work, we synthesize mechanically robust supercrystals built from cubic lead halide perovskite nanocrystals by a two-layer phase diffusion self-assembly with acetonitrile as the antisolvent. This method yields highly faceted thick supercrystals, which are robust enough to be picked up and relocated by microgrippers. We employed X-ray nanodiffraction together with high-resolution scanning electron microscopy and atomic force microscopy to reveal the structure of CsPbBr3, CsPbBr2Cl, and CsPbCl3 supercrystals assembled using the two-layer phase diffusion technique and explain their unusual mechanical robustness. Our findings are crucial for further experiments and applications in which supercrystals need to be placed in a precise location, for example, between the electrodes in an electro-optical modulator.
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Dmitry Baranov @bardmital.bsky.social · 24/06/2025
Hey folks! 🦄 The Nanochemistry and Spectroscopy Group at Lund University is looking for a postdoctoral researcher to help us push forward our studies on collective phenomena in nanomaterials: lu.varbi.com/en/what:job/...
lu.varbi.com
Post-doctoral researcher in nanochemistry and spectroscopy
Subject description The Nanochemistry and Spectroscopy group (https://www.chemphys.lu.se/research/groups/baranov-group/) at the Division of Chemical Physics is seeking a post-doctoral researcher to st
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Dmitry Baranov @bardmital.bsky.social · 15/06/2025
Västerås, for Swedish Chemical Society meeting 2025
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Dmitry Baranov @bardmital.bsky.social · 10/06/2025
Join us at the EmergentNano symposium in Valencia this October!
media.tenor.com
two kittens are playing on a colorful striped blanket
ALT: two kittens are playing on a colorful striped blanket
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Dmitry Baranov @bardmital.bsky.social · 02/06/2025
An outstanding 2-photon vs 1-photon absorption thriller: Mechanistic Insights: Correspondence on “Tuning Co‐Operative Energy Transfer in Copper(I) Complexes Using Two‐Photon Absorbing Diimine‐Based Ligand Sensitizers” - Moghtader - AChIE onlinelibrary.wiley.com/doi/10.1002/...
onlinelibrary.wiley.com
Mechanistic Insights: Correspondence on “Tuning Co‐Operative Energy Transfer in Copper(I) Complexes Using Two‐Photon Absorbing Diimine‐Based Ligand Sensitizers”
One photon or two photons, that is the question. A closer look at the recently presented photosensitizer [Cu(bathocupSANI)2]BF4 revealed that a single red/NIR photon per catalytic turnover is suffici...
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Dmitry Baranov @bardmital.bsky.social · 01/06/2025
So very much enjoyable. Go open your summer with this delightful and quirky film. youtu.be/GEuMnPl2WI4?...
youtu.be
THE PHOENICIAN SCHEME - Official Trailer [HD] - Only in Theaters May 30
YouTube video by Focus Features
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Dmitry Baranov @bardmital.bsky.social · 20/05/2025
A single nanocrystal batch => many superlattice shapes. Must be Maxwell’s demon... Then we used microscopy and X-ray nanodiffraction (with help from Tübingen & DESY) to find a more rational explanation: variations in NC shape, size, and drying conditions. @erc.europa.eu @lund-university.bsky.social
onlinelibrary.wiley.com
Self‐Assembly of Quantum‐Confined CsPbBr3 Perovskite Nanocrystals into Rhombic, Frame, and Rectangular Superlattices
Luminescent quantum-confined perovskite nanocrystals self-assemble into various superlattice shapes: rhombic, rectangular, and hollow frames. The self-assembly conditions, nanocrystals, and superlatt...
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James K Utterback @jamesutterback.bsky.social · 19/05/2025
Paper #3 from the group! We image thermal transport down to monolayer nanocrystal superlattices. In that regime ballistic phonon transport takes effect. This was possible thanks to the beautiful samples from Florian Schulz. advanced.onlinelibrary.wiley.com/doi/10.1002/...
advanced.onlinelibrary.wiley.com
Inverted Thickness Dependence of Thermal Transport in Nanocrystal Supercrystals Down to the Monolayer
Spatiotemporal thermoreflectance microscopy locally probes lateral thermal transport in ultrathin colloidal nanocrystal supercrystals. In stark contrast to typical materials, the thermal diffusivity ...
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Dmitry Baranov @bardmital.bsky.social · 17/05/2025
Timely and with lots of good points. Especially agree with the importance of time and effort. Let Us FIGURE It Out: Why Do Scientists Still Make “Bad” Figures? | ACS Materials Au pubs.acs.org/doi/10.1021/...
pubs.acs.org
Let Us FIGURE It Out: Why Do Scientists Still Make “Bad” Figures?
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Jacopo Bertolotti @jacopobertolotti.com · 17/05/2025
In the latest issue of "Photoniques" (the magazine of the French Optical Society) you can find a short article from yours truly about making scientific visualizations. www.photoniques.com/en/articles/... Big thanks to @sylvaingigan.bsky.social and Nicolas Bonod for inviting me to write it! 😃
photoniques.com
Animating Physics for Science Communication | PhotoniquesMendeley
Photoniques, la revue de la Société Française d’Optique, bimestriel d’information entièrement dédié aux solutions optiques, tant dans leur conception que leur mise en application
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Dmitry Baranov @bardmital.bsky.social · 16/05/2025
After teaching particle in a box… What’s a particle? What’s a box? No 1/r^2 dependence but still: Impact of Wheel Size on Energy Expenditure during Mountain Bike Trail Riding www.hrpub.org/download/201...
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Jacopo Bertolotti @jacopobertolotti.com · 11/05/2025
On #mastodon, John Baez is asking about Quincke rotation. @giovannivolpe.bsky.social do you happen to have a simple explanation about how it works? #Physics #ActiveParticles mathstodon.xyz/@johncarlosb...
mathstodon.xyz
John Carlos Baez (@johncarlosbaez@mathstodon.xyz)
Attached: 1 video QUINCKE ROTATION If you put a small uncharged sphere of stuff in a liquid and turn on uniform, unchanging electric field, the sphere can start turning around! How does it work? ...
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Dmitry Baranov @bardmital.bsky.social · 11/05/2025
Indeed unclear why so many living creatures glow (maybe for no reason at all); yet so much fun to look at various luminescent creatures. www.nationalgeographic.com/animals/arti...
nationalgeographic.com
Pink squirrels and green sharks—why do so many animals ‘glow’ in UV light?
Animals with ultraviolet color patterns can be found all over nature. Here’s what we know about what purpose these patterns serve.
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Dmitry Baranov @bardmital.bsky.social · 05/05/2025
It could be interesting to push it to the limit and see how thin a film one can produce and measure. Beer’s Law and a Bubble Wall: Designing an Innovative Undergraduate Lab with Analytical Chemistry’s Most Common Equation | Journal of Chemical Education pubs.acs.org/doi/10.1021/...
pubs.acs.org
Beer’s Law and a Bubble Wall: Designing an Innovative Undergraduate Lab with Analytical Chemistry’s Most Common Equation
While bubbles may have captured our attention as children, there are still rich pedagogical benefits that can be gleaned by examining the beloved bubble wands that made these colorful, floating balloons. Specifically, students can answer the question “how thick is a bubble wall?” by conducting a new type of analysis using the Beer–Lambert law. Here, students still create a calibration curve to extract the molar absorptivity coefficient of a known analyte; however, they then make an absorbance measurement through the soap film of a bubble wand─not a cuvette─of known analyte concentration and solve for the path length (i.e., the bubble wall’s thickness). This novel way of presenting Beer’s law and UV–vis absorption spectroscopy demonstrated positive pedagogical impact, as indicated by responses to a postlab questionnaire. Further, as surfactant-based systems have interesting applications in sensing, chemical engineering, and diverse industries, this experimental design involving bubbles helps students develop important critical thinking skills and introduces them to wide-ranging analytical and industrial applications.
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Dmitry Baranov @bardmital.bsky.social · 04/05/2025
Platinum story is so memorable; great time capsule: youtu.be/Si7bjzkD-Fs?...
youtu.be
Voices of Inorganic Chemistry - Harry B. Gray
YouTube video by American Chemical Society
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Dmitry Baranov @bardmital.bsky.social · 03/05/2025
Chemistry and spring
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Dmitry Baranov @bardmital.bsky.social · 15/04/2025
A scroll across 62 orders of magnitude in the scale of things: scaleofuniverse.com/en
scaleofuniverse.com
Scale of the Universe: Discover the vast ranges of our visible and invisible world.
Scale of Universe is an interactive experience to inspire people to learn about the vast ranges of the visible and invisible world.
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Dmitry Baranov @bardmital.bsky.social · 15/04/2025
Wow Patterning on Living Tardigrades | Nano Letters pubs.acs.org/doi/10.1021/...
pubs.acs.org
Patterning on Living Tardigrades
Micro/nanofabrication techniques have revolutionized modern photonics and electronics. However, conventional methods remain incompatible with living organisms due to inherent constraints including non...
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Dmitry Baranov @bardmital.bsky.social · 02/04/2025
Solar cells, midday.
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Institute of Science and Technology Austria (ISTA) @istaresearch.bsky.social · 01/04/2025
Access the paper in @science.org: Shengduo Xu et al., Science, 2025. Interfacial bonding enhances thermoelectric cooling in 3D-printed materials. DOI: doi.org/10.1126/scie...
doi.org
Interfacial bonding enhances thermoelectric cooling in 3D-printed materials
Thermoelectric coolers (TECs) are pivotal in modern heat management but face limitations in efficiency and manufacturing scalability. We address these challenges by using an extrusion-based 3D printing technique to fabricate high-performance ...
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Dmitry Baranov @bardmital.bsky.social · 31/03/2025
I thought octadecene, turns out aperitif (www.ode-aperitif.com)
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Eric Topol @erictopol.bsky.social · 29/03/2025
Only 9% of >105,000 people with 30-years of follow-up reached age 70 without chronic diseases. Our diet and healthy aging, a review of the new report @naturemedicine.bsky.social this week, and placing it in context erictopol.substack.com/p/our-diet-a...
erictopol.substack.com
Our Diet and Healthy Aging
A very large prospective study assessed dietary patterns and healthy aging
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American Conference on Inorganic Nanoscience @acinconference.bsky.social · 26/03/2025
🔴Explore colloidal nanocrystals synthesis from size, shape control to surface coordination at the American Conference on Inorganic Nanoscience #ACIN with @mphendricks.bsky.social, Milad Abolhasani, @maksymuki.bsky.social and Sohee Jeong 📆6th-10th July 2025 📍Dover, USA 🔗https://acin.scitoevents.com
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Elisabeth Bik @elisabethbik.bsky.social · 15/03/2025
Thank you, @einsteinberlin.bsky.social, for recognizing the importance of raising concerns about scientific papers. Often, science sleuths face professional, personal, and legal threats. Awards like these are vital to acknowledging the significance of our work.
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