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Nano Letters

@nanoletters

Fundamental research in all branches of the theory and practice of nanoscience and nanotechnology

ID: 22986334

linkhttp://pubs.acs.org/nanolett calendar_today05-03-2009 21:59:18

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The latest issue of Nano Letters is live! On the cover: "Interparticle Ligand Exchange Kinetics Revealed by Time-Resolved SANS" Learn more: go.acs.org/cdF

The latest issue of Nano Letters is live! On the cover: "Interparticle Ligand Exchange Kinetics Revealed by Time-Resolved SANS"    

Learn more: go.acs.org/cdF
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🔓 #OpenAccess: "Overcoming the Conductance versus Crossover Trade-off in State-of-the-Art Proton Exchange Fuel-Cell Membranes by Incorporating Atomically Thin Chemical Vapor Deposition Graphene" by Moehring et al. go.acs.org/cdM

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The latest issue of Nano Letters is live! On the cover: "Elementary Exciton Processes of InP/ZnS Quantum Dots Under Applied Pressure" Learn more: go.acs.org/ce8

The latest issue of Nano Letters is live! On the cover: "Elementary Exciton Processes of InP/ZnS Quantum Dots Under Applied Pressure"    

Learn more: go.acs.org/ce8
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🔓 #OpenAccess: "Nanospiked Cellulose Gauze That Attracts Bacteria with Biomolecules for Reducing Bacterial Load in Burn Wounds" by Hata, Miyazaki, Okamoto, Serizawa, & Nakamura go.acs.org/cee

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The latest issue of Nano Letters is live! On the cover: "A Supramolecular Deferoxamine–Crisaborole Nanoparticle Targets Ferroptosis, Inflammation, and Oxidative Stress in the Treatment of Retinal Ischemia/Reperfusion Injury" Learn more: go.acs.org/cem

The latest issue of Nano Letters is live! On the cover: "A Supramolecular Deferoxamine–Crisaborole Nanoparticle Targets Ferroptosis, Inflammation, and Oxidative Stress in the Treatment of Retinal Ischemia/Reperfusion Injury"    

Learn more: go.acs.org/cem
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🔓 #OpenAccess: "k-Resolved Ultrafast Light-Induced Band Renormalization in Monolayer WS2 on Graphene" by Hofmann, Steinhoff, Krause, Mishra, Orlandini, Forti, Coletti, Wehling, & Gierz go.acs.org/cet

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Two-dimensional (2D) semiconductors have attracted a considerable amount of interest as channel materials for future transistors. Patterning of 2D semiconductors is crucial for separating continuous monolayers into independent units. go.acs.org/cf4

Two-dimensional (2D) semiconductors have attracted a considerable amount of interest as channel materials for future transistors. Patterning of 2D semiconductors is crucial for separating continuous monolayers into independent units. 

go.acs.org/cf4
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Leveraging the 90-year-old Hume-Rothery rule, a tetra-metallic Mo-Pd-Ni-Fe alloy is designed as an outstanding bifunctional electrocatalyst for green hydrogen production Sayan Bhattacharyya group @Surajit41325237 vishwadeepa hazra Supriti Dutta Department of Chemical Sciences IISER Kolkata go.acs.org/cfg

Leveraging the 90-year-old Hume-Rothery rule, a tetra-metallic Mo-Pd-Ni-Fe alloy is designed as an outstanding bifunctional electrocatalyst for green hydrogen production
<a href="/sayanb_iiserk/">Sayan Bhattacharyya</a> group @Surajit41325237 <a href="/Vishwadeepa09/">vishwadeepa hazra</a> <a href="/SupritiDutta31/">Supriti Dutta</a> <a href="/dcsiiserkol/">Department of Chemical Sciences IISER Kolkata</a> 

go.acs.org/cfg
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A recent work from TIFR Hyderabad demonstrates the potential of lithium based photo batteries by dissecting the roles of light and heat in such electrochemical systems. Materials & Interface Engineering @ TNN's Lab TIFR Hyderabad Narayanan Tharangattu Narayanan go.acs.org/cfz

A recent work from TIFR Hyderabad demonstrates the potential of lithium based photo batteries by dissecting the roles of light and heat in such electrochemical systems. <a href="/TnnLab/">Materials & Interface Engineering @ TNN's Lab</a> <a href="/TIFRH_buzz/">TIFR Hyderabad</a> <a href="/tharangattu/">Narayanan Tharangattu Narayanan</a>

go.acs.org/cfz
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Leveraging physics-informed AI for topological plasmonics! This study explores unidirectional edge modes in plasmonic devices, combining deep learning and advanced photonics. #NanoLetters #AI #Nanotechnology go.acs.org/cfF

Leveraging physics-informed AI for topological plasmonics! This study explores unidirectional edge modes in plasmonic devices, combining deep learning and advanced photonics. #NanoLetters #AI #Nanotechnology

go.acs.org/cfF
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This work explores the root causes of calendar aging in silicon-containing batteries from a top-down perspective and quantifies the decay across various scales. Si significantly exacerbates parasitic reactions during calendar storage. go.acs.org/cfM

This work explores the root causes of calendar aging in silicon-containing batteries from a top-down perspective and quantifies the decay across various scales. Si significantly exacerbates parasitic reactions during calendar storage.

go.acs.org/cfM
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Breaking now in Nano Letters: Combining tilted lasers and moiré engineering unlocks scalable photocurrents and topological states in #graphene. A leap forward in quantum materials! Luis E F Foà Torres Hernán Calvo mberdakin go.acs.org/cgg

Breaking now in <a href="/NanoLetters/">Nano Letters</a>: Combining tilted lasers and moiré engineering unlocks scalable photocurrents and topological states in #graphene. A leap forward in quantum materials! <a href="/foatorres/">Luis E F Foà Torres</a> <a href="/HernnCalvo2/">Hernán Calvo</a> <a href="/mberdakin/">mberdakin</a>

go.acs.org/cgg
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Researchers from the Department of Quantum Matter Physics at the University of Geneva demonstrate the possibility to tune the charge density wave phase transition by means of electron doping in a semiconducting transition metal dichalcogenide. go.acs.org/cgt

Researchers from the Department of Quantum Matter Physics at the University of Geneva demonstrate the possibility to tune the charge density wave phase transition by means of electron doping in a semiconducting transition metal dichalcogenide.

go.acs.org/cgt
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Discover the potential of Mem-Emitters! A new class of devices combining memory and light emission, leveraging 2D materials and beyond for advanced optoelectronic applications. go.acs.org/ch3

Discover the potential of Mem-Emitters! A new class of devices combining memory and light emission, leveraging 2D materials and beyond for advanced optoelectronic applications.

go.acs.org/ch3
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PEDOT is going one-dimensional! Lithography-free conductive polymer nanowires were interfaced with both algae and human blood stem cells paving the way for 1D organic bioelectronics. Lund University @nanolund MultiPark at LundU martin hjort Roger Olsson go.acs.org/chH

PEDOT is going one-dimensional! Lithography-free conductive polymer nanowires were interfaced with both algae and human blood stem cells paving the way for 1D organic bioelectronics. <a href="/lunduniversity/">Lund University</a> @nanolund <a href="/MultiparkL/">MultiPark at LundU</a> <a href="/HjortsX/">martin hjort</a> <a href="/OlssonRoger/">Roger Olsson</a>

go.acs.org/chH
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In-situ atomic-scale electron microscopy studies reveal formation of distinct Au and AuSe single/poly-crystalline products on CdSe that are mediated by the oil-/water-phase microenvironment. go.acs.org/cle

In-situ atomic-scale electron microscopy studies reveal formation of distinct Au and AuSe single/poly-crystalline products on CdSe that are mediated by the oil-/water-phase microenvironment.

go.acs.org/cle
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This new Special Issue highlights key research spanning synthesis, characterization, and computation where nanoscience plays a front-and-center role in advancing the development, understanding, and applications of energy-related materials and phenomena. ➡️go.acs.org/cuL

This new Special Issue highlights key research spanning synthesis, characterization, and computation where nanoscience plays a front-and-center role in advancing the development, understanding, and applications of energy-related materials and phenomena.
➡️go.acs.org/cuL
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This new Special Issue highlights key research spanning synthesis, characterization, and computation where nanoscience plays a front-and-center role in advancing the development, understanding, and applications of energy-related materials and phenomena. ➡️go.acs.org/czi

This new Special Issue highlights key research spanning synthesis, characterization, and computation where nanoscience plays a front-and-center role in advancing the development, understanding, and applications of energy-related materials and phenomena.
➡️go.acs.org/czi