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Highly efficient and selective photocatalytic dehydrogenation of benzyl alcohol for simultaneous hydrogen and benzaldehyde production over Ni-decorated Zn_(0.5)Cd_(0.5)S solid solution 被引量:7
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作者 Lei Zhang Daochuan Jiang +3 位作者 Rana Muhammad Irfan Shan Tang Xin Chen Pingwu Du 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2019年第3期71-77,共7页
Photocatalytic conversion of solar energy into hydrogen and high value-added fine chemicals has attracted increasing attention. Herein, we demonstrate an efficient photocatalytic system for simultaneous hydrogen evolu... Photocatalytic conversion of solar energy into hydrogen and high value-added fine chemicals has attracted increasing attention. Herein, we demonstrate an efficient photocatalytic system for simultaneous hydrogen evolution and benzaldehyde production by dehydrogenation of benzyl alcohol over Nidecorated Zn_(0.5)Cd_(0.5)S solid solution under visible light. The photocatalytic system shows an excellent hydrogen production rate of 666.3 μmol h^(-1) with high stability. The optimal apparent quantum yield of52.5% is obtained at 420 nm. This noble-metal-free photocatalytic system displays much higher activity than pure Zn_(0.5)Cd_(0.5)S and Pt-loaded Zn_(0.5)Cd_(0.5)S solid solution. Further studies reveal that the metallic Ni nanocrystals play an important role in accelerating the separation of photogenerated charge carriers and the subsequent cleavage of α-C–H bond during dehydrogenation of benzyl alcohol. 展开更多
关键词 Photocatalysis BENZYL alcohol oxidation hydrogen production Nickel Solid solution Charge separation
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超声波分解醇类水溶液制氢 被引量:1
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作者 都学敏 张哲瑞 +1 位作者 党政 白博峰 《化工学报》 EI CAS CSCD 北大核心 2012年第3期924-928,共5页
引言利用多种能源资源和发展高效、清洁的能源技术是能源发展的目标。氢能被认为是21世纪最有前途的新能源之一[1]。通过对有机废液的洁净转化获得氢能有重要的现实意义。
关键词 超声分解 制氢 醇类水溶液
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