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Source channel @githubtrending · Post #15044 · Aug 9

#javascript#capture_screenshots#clone#dom#js#screenshot snapDOM is a very fast and accurate tool that captures any part of a webpage (HTML elements) as images, including styles, fonts, shadows, and even hidden parts like shadow DOM. It can save these captures in many formats like SVG, PNG, JPG, WebP, or canvas, and works without extra dependencies using standard web APIs. You can easily customize the image size, quality, and even exclude parts you don’t want. It handles complex web features and is much faster than similar tools, making it great for quickly creating high-quality snapshots of web content for use in apps or presentations. This saves you time and effort in capturing styled webpage visuals. https://github.com/zumerlab/snapdom

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✅Специальный выпуск № 3 за 2024 г продолжает обзор, рассматривающий актуальные вопросы разработки полностью твердотельных литиевых аккумуляторов с использованием композитного материала на основе Li7La3Zr2O12 (LLZ). Обсуждается, что за счет введения различных добавок можно снизить температуру и/или время спекания твердого электролита при сохранении значений литий-ионной проводимости порядка 10^{–4} См/см при комнатной температуре. 🖌️Eugenia Ilyina (https://orcid.org/0000-0003-1759-5234) 📘Composite solid electrolytes based on Li7La3Zr2O12 for all-solid-state lithium power sources 📌Year 2024, Volume 3, Number 3 (Special Issue) https://doi.org/10.15826/elmattech.2024.3.038 🏛️Institute of High-Temperature Electrochemistry UB RAS https://ihte.ru/?page_id=3106 текст статьи https://journals.urfu.ru/index.php/elmattech/article/view/7769/5582 #CompositeSolidElectrolyte#Conductivity

Новая работа регулярного выпуска👇 🟢 2022 🟢 V. 9 🟢 Issue 4 🟢 No. 20229415🟢 Letter 📜 Local structure and ionic transport in acceptor-doped layered perovskite BaLa2In2O7 👩‍🎓 Nataliia A. Tarasova (https://orcid.org/0000-0001-7800-0172) 🏛 Institute of High Temperature Electrochemistry UB RAS, http://www.ihte.uran.ru 📚#layered_perovskite#ionic#conductivity#acceptor_doping#BaLa2In2O7 🔗https://doi.org/10.15826/chimtech.2022.9.4.15 https://journals.urfu.ru/index.php/chimtech/article/view/6272

Новая работа для регулярного выпуска👇 🟢 2022 🟢 V. 9 🟢 Issue 4 🟢 No. 20229414🟢 Article 📜 Novel Nb5+-doped hexagonal perovskite Ba5In2Al2ZrO13 (structure, hydration, electrical conductivity) 👩‍🎓👨‍🎓 R.D. Andreev (https://orcid.org/0000-0001-7131-0442), D.V. Korona (https://orcid.org/0000-0001-5422-717X), I.A. Anokhina (https://orcid.org/0000-0002-4223-6201), I.E. Animitsa (https://orcid.org/0000-0002-0757-9241) 🏛 Ural Federal University, https://urfu.ru/en@urfu_ru 🏛 Institute of High Temperature Electrochemistry, http://www.ihte.uran.ru/?page_id=3106 @ihteubras 📚#hexagonal#perovskite#proton#conductivity#hydration#transport 🔗https://doi.org/10.15826/chimtech.2022.9.4.14 https://journals.urfu.ru/index.php/chimtech/article/view/6200

Опубликована новая работа 🟠 2023 🟠 V. 10 🟠 Issue 4 🟠 Art. 202310409 🟠 Article 🟠 📜 Features of forming a low-temperature cubic Li7La3Zr2O12 film by tape casting 👩‍🎓👨‍🎓 E. Lyalin (http://orcid.org/0000-0002-0539-506X), L. Pershina (http://orcid.org/0000-0003-1759-5234), E. Il’ina, K. Druzhinin (http://orcid.org/0000-0002-8947-8208), S. Belyakov (https://orcid.org/0000-0001-9237-8307) 🏛 Institute of High Temperature Electrochemistry, UB RAS, https://ihte.ru 🏛 Ural Federal University, https://urfu.ru/en 📚#Li7La3Zr2O12#LIB#lithium#conductivity#films#tapecasting#allSSB 🔗https://doi.org/10.15826/chimtech.2023.10.4.09 https://www.chimicatechnoacta.ru/index.php/chimtech/article/view/7161

Новая работа регулярного выпуска👇 🟢 2022 🟢 V. 9 🟢 Issue 4 🟢 No. 20229405🟢 📜 Phosphorus-doped protonic conductors based on BaLanInnO3n+1 (n = 1, 2): applying oxyanion doping strategy to the layered perovskite structure 👩‍🎓👨‍🎓 N. Tarasova (https://orcid.org/0000-0001-7800-0172), A. Galisheva (https://orcid.org/0000-0003-4346-5644) 🏛 Institute of High Temperature Electrochemistry, http://www.ihte.uran.ru 📚#layered#perovskite#oxyanion#doping#proton#conductivity#BaLaInO4#BaLa2In2O7 🔗https://doi.org/10.15826/chimtech.2022.9.4.05 https://journals.urfu.ru/index.php/chimtech/article/view/5979