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Oxide content optimized ZnS-ZnO heterostructures via facile thermal treatment process for enhanced photocatalytic hydrogen production

机译:通过便捷的热处理工艺优化氧化含量的ZnS-ZnO异质结构,以提高光催化制氢能力

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The ZnS-ZnO heterostructured photocatalysts are synthesized by thermal treatments of the ZnS materials at various thermal processing temperatures (150 ℃ - 550 ℃) with controlling O_2 partial pressures (7.8 kPa - 33.8 kPa). The ZnS-ZnO composite structure shows much higher photocatalytic hydrogen production than those from the ZnS and ZnO pure substances. This phenomenon is mainly caused by effective charge separation between the photoexcited electrons and holes. The thermal oxidation of ZnS materials proceeds at temperatures higher than 500 ℃. In addition to the thermal processing temperature, O_2 partial pressure is also chosen for an experimental variable in order to control the atomic composition minutely. The ZnS-ZnO photocatalyst composite fabricated at 500 ℃ under 16.9 kPa of O_2 partial pressure shows the highest hydrogen production rate of 494.8 μmol g~(-1) h~(-1) under 1 sun irradiation condition, and it is 37 times higher than that (13.5 μmol g~(-1) h~(-1)) from the ZnS pure substance. At this optimized production rate, the Zn/S/O atomic compositions are measured as 45.9/46.9/7.2 (XPS) and 53.3/42.1/4.6 (ICP-AES), respectively.
机译:ZnS-ZnO异质结构光催化剂是通过在ZnS材料的各种热处理温度(150℃-550℃)和O_2分压(7.8 kPa-33.8 kPa)下进行热处理而合成的。 ZnS-ZnO复合结构的光催化产氢量高于ZnS和ZnO纯物质。这种现象主要是由于光激发电子与空穴之间的有效电荷分离所引起的。 ZnS材料的热氧化在高于500℃的温度下进行。除了热处理温度之外,还选择O_2分压作为实验变量,以便精细地控制原子组成。在16.9 kPa的O_2分压下于500℃制备的ZnS-ZnO光催化剂复合材料在1种阳光照射条件下的最高产氢速率为494.8μmolg〜(-1)h〜(-1),高出37倍。比ZnS纯物质(13.5μmolg〜(-1)h〜(-1))高。在此优化的生产率下,Zn / S / O原子组成的测量值分别为45.9 / 46.9 / 7.2(XPS)和53.3 / 42.1 / 4.6(ICP-AES)。

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