H2020Индивидуална стипендия2017–2019

3D-POWER · Three-Dimensional Perovskite Oxides as Working ElectRochemical devices

„Хоризонт 2020“ — Действия „Мария Склодовска-Кюри“

Период
2017-04-01 → 2019-03-31
Финансиране от ЕС
195 455 €
Участници
1
Схема
MSCA-IF-EF-CAR

Линиите свързват координатора с партньорите.

Накратко на български

Перовскитните оксиди се използват за 3D принтиране на сложни структури, които служат като електроди за твърдотелни горивни клетки. Тези технологии помагат за подобряване на устройствата за съхранение и преобразуване на енергията, като батерии и електролизери.

Този кратък обзор е генериран от изкуствен интелект

Кратко обяснение, генерирано от езиков модел по текста на CORDIS. Оригиналът е по-долу.

Резултати накратко

Three-Dimensional Perovskite Oxides as Working ElectRochemical devices

3D-POWER project has utilized advancements in Additive Manufacturing (AM) techniques such as 3D-Printing to fabricate imaginative architectures from layered perovskite oxides such as La1-xSrxMnO3 (LSM) materials to address the specific demands of the sustainable energy sector. Under this work we successfully custom designed innovative 3D structures, which have been used as promising electrode templates for Solid Oxide Fuel Cells. The developed 3D-Printing method for electrode fabrication is applicable to other electrochemical devices such as batteries, electrolysers, and hydrogen storage. These activities have made a promising start in contributing towards the EU’s need to develop innovative materials solutions for providing next generation energy technologies. This is a highly innovative work which addresses vital issues related to energy conversion and storage and look forward to building sustainable energy solutions from commercially available materials such as oxides, ceramics and other materials. This is an emerging and extremely exciting research field which combines novel and disruptive technologies like 3D-printing with traditional electrochemistry over a miniature scale. The exciting results which have been achieved under 3D-POWER will be beneficial for scientific society in the field of Renewable Energy Technologies and in general environmental research within the EU.

Текст от CORDIS, на английски · Данни: CORDIS, © Европейски съюз

Цел на проекта

Three-Dimensional Perovskite Oxides as Working ElectRochemical devices (3D-POWER) will focus on utilization of perovskite oxides in combination with functional metallic materials to address the specific demands of sustainable energy sector. The so formed 3D structures will serve as promising electrodes for the development of electrochemical devices such as solid oxide fuel cells, electrolyzers, batteries and supercapacitors. Specifically, within this project atomically layered perovskites including La1-xSrxCo1-yFeyO3 (LSCF) and La1-xSrxMnO3 (LSM) will be synthesized through pulsed laser deposition and/or molecular beam epitaxy on pre-designed 3D substrates of Copper or Iron depending on growth conditions of perovskites and eventual applications of the electrodes. These substrates will be uniquely fabricated by nanoscribe printing of metals to cast a 3D scaffold like support for the growth of perovskites and later will be chemically etched off. Further, the performance of these perovskite constructs will be enhanced by depositing highly functional transition metal dichalcogenides (TMDs). This will serve as interconnects due to their excellent electrical, chemical and physical properties and overall enhance device’s catalytic activity.The custom designed formation of electrodes proposed in 3D-POWER will address the critical issues like reproducibility, low gravimetric density, and long range conduction. Innovative combination of perovskites in 3D scaffold architecture with the functional TMDs will propel new pathways for high performance electrochemical devices for energy storage and conversion. Through 3D-POWER I will utilize Imperial’s advanced cutting edge technology and develop relevant applications with Prof. Skinner’s multidisciplinary team that have an excellent track record for producing fundamental material science, knowledge transfer through training and interaction with relevant industrial partner as under planning with Ceres power.

Оригинален текст от CORDIS (на английски).

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Данни: CORDIS, © Европейски съюз