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#ChemElectroChem is delighted to share their special collection "Electrochemistry Talents", highlighting the work of emerging electrochemists, nominated by the Editorial Advisory Board. All articles are #OpenAccess and can be read here: bit.ly/electrochem-talents

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👏Congrats to Patricia K., @hannatuerk.bsky.social, Christoph S. and collabs within #SPP2080 project, whose paper "Interfacial Atomic and Electronic Structures of LSM/YSZ Thin Films as Models for SOC Air Electrodes" made it into #ChemElectroChem @chemistryeurope.bsky.social !

🔜Online
👇Paper digest

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Another contribution to the #ElectrochemistryTalents series of #ChemElectroChem is now online! Learn about electrochemical oxidations of aryl boronic acids in this work by Malapit
and co-workers: chemistry-europe.onlinelibrary.wiley.com/doi/10.1002/...

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Don't miss this Review article recently published in #ChemElectroChem as part of their #ElectrochemistryTalents series! "Artificial Enzymatic Electrochemistry" by Dylan Boucher and co-workers: chemistry-europe.onlinelibrary.wiley.com/doi/abs/10.1...

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Statistical Approach to the Free‐Energy Diagram of the Nitrogen Reduction Reaction on Mo2C MXene This study systematically examines the influence of different gas-phase correction strategies on the computed thermodynamic landscape of nitrogen reduction reaction (NRR) over Mo2C(0001) MXene. By co....

📢 Excited to share our latest publication in #ChemElectroChem!

📘 "Statistical Approach to the Free-Energy Diagram of the Nitrogen Reduction Reaction on Mo2C MXene"
🔗 doi.org/10.1002/celc...

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Check out the 10th anniversary collection of #ChemElectroChem! Thanks to our board members, reviewers, and authors for their great contributions and support over the past decade!

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#ChemElectroChem celebrated their 10th anniversary in 2024. To highlight the latest developments in this exciting field, we have put together a Special Collection with contributions from our Board Members and top authors. We hope you enjoy it! bit.ly/10yearsofCELC

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The "Electrochemistry Talents" series by #ChemElectroChem features the next generation of electrochemists around the world! The first article by Mark A. Buckingham is now online and is #openaccess: chemistry-europe.onlinelibrary.wiley.com/doi/10.1002/...

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Understanding Charge Storage Mechanisms in Flexible Nanocellulose/Graphite Battery Electrodes Flexible nanocellulose/graphite electrodes that can sustain 180° bendability are investigated. The mechanistic insights into the charge storage characteristics of nanocellulose reveal dependence on t....

New paper out: Understanding Charge Storage Mechanisms in Flexible Nanocellulose/Graphite Battery Electrodes by Evangelia Founta at #ChemElectroChem with Theresa Schoetz (@UofIllinois), Ana Jorge Sobrido (@QMUL) et al doi.org/10.1002/celc... @unisouthampton.bsky.social #FlexibleNanoelectronicsLab

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Electrodeposition of Thermoelectric Materials Thermoelectric (TE) materials produce electrical energy when exposed to a thermal gradient. This review presents the opportunities of electrochemistry as a synthetic route for promising TE materials,...

🎉 New paper alert! 🎉

Our #review into the #Electrodeposition of #Thermoelectric Materials has just been published with #ChemElectroChem. A great first stop for anyone looking to get involved in the field!

🔗 doi.org/10.1002/celc...

#ChemSky @unisouthampton.bsky.social

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The preview picture for the article, containing the article title, author names, affiliation and a tagline that this article is part of the Anniversary special collection of ChemElectroChem. It also contains the article's Table of Contents graphic, showing a simplified Venn diagram of immobilized metal salens combining the best of both worlds of direct electrolysis and using metal salens as homogeneous electrocatalysts, making the system chemoselective, easy to separate and thus enabling recycling.

The preview picture for the article, containing the article title, author names, affiliation and a tagline that this article is part of the Anniversary special collection of ChemElectroChem. It also contains the article's Table of Contents graphic, showing a simplified Venn diagram of immobilized metal salens combining the best of both worlds of direct electrolysis and using metal salens as homogeneous electrocatalysts, making the system chemoselective, easy to separate and thus enabling recycling.

Our Pick of the Week, out #OpenAccess in #ChemElectroChem as part of their Anniversary Special Collection by @minteerlab.bsky.social:

"Utility of Immobilized Metal Salens as Electrocatalysts: Fuel Cells and Organic Electrosynthesis"
bit.ly/CELC_2400445

#Chemsky #Chemistry

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