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优化用于水热合成光催化产氢高性能硫化镉的硫源前驱体。

Optimizing the precursor of sulfur source for hydrothermal synthesis of high performance CdS for photocatalytic hydrogen production.

作者信息

Li Hui, Liu Lihua, Wang Ziqun, Zheng Xiuzhen, Meng Sugang, Chen Shifu, Fu Xianliang

机构信息

College of Chemistry and Material Science, Huaibei Normal University Huaibei Anhui 235000 China

出版信息

RSC Adv. 2018 Mar 22;8(21):11489-11497. doi: 10.1039/c8ra00250a. eCollection 2018 Mar 21.

Abstract

Although the CdS photocatalyst has been extensively investigated, a rational hydrothermal synthesis route is still required to prepare highly active CdS for H evolution reaction (HER). To optimize the precursor of the sulfur source, three prevalent organic sulfur sources of thiourea (TA), thioacetamide (TAA) and l-cysteine (l-Cys) were used for hydrothermal synthesis of CdS. Their effects on the crystallographic structure, morphology, optical property, band structure, and photocatalytic HER performance of the products were then investigated systematically. The results indicated that hexagonal branched dendritic structure CdS (S-TA) could be produced in TA solution and showed the highest HER activity due to the branched 1D structure, the smallest interfacial electron transfer resistance and the most negative conduction band bottom ( ). Whereas in TAA, spherical CdS (S-TAA) with a mixed phase of hexagonal and cubic was obtained. The mixed phase structure and the more positive of S-TAA lead to a considerably lower HER activity than that of S-TA. Poorly crystallized hexagonal CdS nanoparticles (S-Cys) were prepared in l-Cys and showed the lowest HER performance as its is very near to H reduction potential. Thus, compared to T-AA and l-Cys, TA is a more suitable sulfur source for hydrothermal preparation of highly active CdS for HER.

摘要

尽管硫化镉光催化剂已得到广泛研究,但仍需要一种合理的水热合成路线来制备用于析氢反应(HER)的高活性硫化镉。为了优化硫源前驱体,使用了三种常见的有机硫源:硫脲(TA)、硫代乙酰胺(TAA)和L-半胱氨酸(L-Cys)来水热合成硫化镉。然后系统地研究了它们对产物的晶体结构、形貌、光学性质、能带结构和光催化析氢反应性能的影响。结果表明,在TA溶液中可生成六方分支树枝状结构的硫化镉(S-TA),由于其分支的一维结构、最小的界面电子转移电阻和最负的导带底( ),显示出最高的析氢活性。而在TAA中,得到了具有六方和立方混合相的球形硫化镉(S-TAA)。S-TAA的混合相结构和更正的 导致其析氢活性比S-TA低得多。在L-Cys中制备了结晶性较差的六方硫化镉纳米颗粒(S-Cys),由于其 非常接近氢还原电位,显示出最低的析氢性能。因此,与T-AA和L-Cys相比,TA是水热制备用于析氢反应的高活性硫化镉更合适的硫源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/46ae/9079128/45af7fcedd0b/c8ra00250a-f9.jpg

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