详细信息
Simple one-pot, high-yield synthesis of 2D graphitic carbon nitride nanosheets for photocatalytic hydrogen production ( SCI-EXPANDED收录 EI收录)
文献类型:期刊文献
英文题名:Simple one-pot, high-yield synthesis of 2D graphitic carbon nitride nanosheets for photocatalytic hydrogen production
作者:Ye, Ziwei[1,2];Yue, Wenhui[1,2];Tayyab, Muhammad[1,2];Zhang, Jungang[1,2];Zhang, Jinlong[1,2]
机构:[1]Shanghai Engn Res Ctr Multimedia Environm Catalysi, Shanghai 200237, Peoples R China;[2]East China Univ Sci & Technol, Sch Chem & Mol Engn, Key Lab Adv Mat, Shanghai 200237, Peoples R China
年份:2022
卷号:51
期号:48
起止页码:18542
外文期刊名:DALTON TRANSACTIONS
收录:;EI(收录号:20225013232315);WOS:【SCI-EXPANDED(收录号:WOS:000891511800001)】;
基金:This work was supported by the National Key R&D Program of China (2022YFE0107900), National Natural Science Foundation of China (21972040), the Program of Introducing Talents of Discipline to Universities (B20031), Innovation Program of Shanghai Municipal Education Commission (2021-01-07-00-02-E00106), the Science and Technology Commission of Shanghai Municipality (20DZ2250400, 22230780200) and Fundamental Research Funds for the Central Universities.
语种:英文
外文关键词:Ammonia - Carbon nitride - Chlorine compounds - Hydrogen production - Metabolism - Photocatalytic activity - Urea
摘要:2-Dimensional (2D) graphitic carbon nitrate (g-C3N4) nanosheets are particularly interesting photocatalytic materials because of their large surface area and excellent photoelectric properties. However, it remains challenging to synthesize 2D g-C3N4 nanosheets with high yield and high activity simultaneously. In this work, a urea-assisted one-pot method was developed in which the decomposition of urea released NH3 gas which exfoliated bulk g-C3N4 into thin nanosheets and generated pores and wrinkles on their surface. The product g-C3N4 nanosheets therefore possessed abundant surface active sites for interaction with reactants and showed enhanced light utilization efficiency, giving rise to their improved hydrogen production activity which was 3.36 times higher than that of their bulk counterpart. Importantly, the yield of g-C3N4 nanosheets using this method was almost doubled compared to a previously reported ammonium chloride (NH4Cl) assisted method. Given that g-C3N4 nanosheets are building blocks for various photocatalysts, the current synthetic method which produces g-C3N4 nanosheets with high yield and high activity shall pave the way for high-performance photocatalytic applications such as hydrogen production and more.
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