Impact Factor:17.2
DOI number:10.1038/s41467-024-51658-2
Journal:NATURE COMMUNICATIONS
Abstract:Liquid (organic) hydrogen carriers ([18H]-dibenzyltoluene, MeOH, formic acid, etc.) form a toolbox for the storage and transport of green hydrogen, which is crucial for the implementation of renewable energy technologies. Simple organic salts have been scarcely investigated for this purpose, despite many advantages such as low cost and minor toxicity, as well as easy handling. Here, we present a potassium formate/potassium bicarbonate hydrogen storage and release energy system, that is applicable and shows high stability (6 months). Utilizing ppm amounts of the molecularly defined Ru-5 complex, hydrogen release rates of up to 9.3 L h-1 were achieved. The same catalyst system promoted the hydrogenation of KHCO3 to HCOOK with a TON of 9650. In this way, combined hydrogen storage-release cycles can be performed for 40 times.
Co-author:Schareina, Thomas;Hu, Yuya;Leval, Alexander;Massa, Jonas;Turan, Volkan;Sponholz, Peter;Wei, Duo*;Jackstell, Ralf*;Junge, Henrik*;Beller, Matthias*
First Author:Sang, Rui;Stein, Carolin Amber Martina
Indexed by:Journal paper
Correspondence Author:Wei, Duo*;Jackstell, Ralf*;Junge, Henrik*;Beller, Matthias*
Document Type:J
Volume:15
Issue:1
Translation or Not:no
Date of Publication:2024-08-23
Included Journals:SCI
Links to published journals:https://www.nature.com/articles/s41467-024-51658-2
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Date of Employment:2025-10-14
School/Department:杭州国际创新研究院
Business Address:杭州市北航国际创新研究院R3-5045
Gender:Male
Contact Information:0571-28881454
Status:Employed
Academic Titles:准聘教授
Alma Mater:德国莱布尼茨催化研究所
Discipline:Applied Chemistry
Chemistry
Honors and Titles:
海外优青 2023-10-20
德国莱布尼茨协会全额奖学金 2016-07-15
法国雷恩第一大学国际留学生全额奖学金 2014-09-25
2018年度国家优秀自费留学生 2019-05-10
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