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Enhanced photocatalytic hydrogen generation over a Z-scheme nanohybrid composed of porphyrin cobalt metal-organic frameworks in-situ fabricated on potassium niobate microflowers

机译:在铌酸钾微花上原位制备卟啉钴金属有机骨架的Z型纳米杂化物上增强光催化制氢

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摘要

? 2022 Hydrogen Energy Publications LLCA promising direct Z-scheme KNO MF/Co-PMOF nanohybrid was facilely achieved by cobalt meso-tetrakis(4-carboxyphenyl) porphyrin metal organic frameworks (Co-PMOF) in-situ grown on potassium niobate microflowers (KNO MF). The tight combination of the two semiconductors can be confirmed by HRTEM. It was found that the spectral range can be effectively expanded, and also the carrier separation and migration efficiency in the nanohybrid can be effectively improved by the establishment of the built-in electric field at the interface. Under irradiation without adding any cocatalysts, the optimized KNO MF/Co-PMOF exhibited 14.5 times higher activity than that of pristine KNO MF. Moreover, the KNO MF/Co-PMOF showed a good durability in five continuous recycles (30 h). This study will provide a promising strategy for designing Z-type photocatalysts for enhanced H2 release.
机译:?2022 Hydrogen Energy Publications LLCA 通过铌酸钾微花 (KNO MF) 原位生长的钴内消旋四(4-羧基苯基)卟啉金属有机框架 (Co-PMOF) 轻松实现了有前途的直接 Z 方案 KNO MF/Co-PMOF 纳米杂化物。两种半导体的紧密结合可以通过HRTEM来证实。研究发现,通过在界面处建立内置电场,可以有效扩大纳米杂化物的光谱范围,并有效提高载流子分离和迁移效率。在不添加任何助催化剂的辐照下,优化后的KNO MF/Co-PMOF表现出比原始KNO MF高14.5倍的活性。此外,KNO MF/Co-PMOF在连续5次循环(30 h)中表现出良好的耐久性。本研究将为设计Z型光催化剂以增强H2释放提供一种有前途的策略。

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