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Charge separation and molecule activation promoted by Pd/MIL-125-NH2 hybrid structures for selective oxidation reactions

机译:电荷分离和分子激活了通过Pd / mil - 125 - nh2混合结构选择性氧化反应

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摘要

While heterogeneous photocatalysis is regarded as a sustainable strategy to achieve organic reactions for the production of high-value-added organics, photocatalytic efficiency is generally limited by poor charge separation, dull surface catalytic activity and the consequently caused insufficient generation of active species. Herein, the hybrid structures of metal-organic frameworks (MOFs) incorporated with Pd ultrasmall nanocrystals are synthesized, and their photocatalytic performance is evaluated by the oxidative coupling of benzylamine as a model reaction. The photocatalytic activity of the Pd/MIL-125-NH2 hybrid material with an optimal Pd loading is greatly superior to that of the pristine MIL-125-NH2, achieving a high benzylamine conversion rate of 3136 mu mol h(-1) g(cat)(-1) at 94.08% conversion. The enhanced charge transfer and separation in Pd/MIL-125-NH2 are verified by photoluminescence spectroscopy and photoelectrochemical experiments. Photogenerated reactive oxygen species are probed by 3,3 ',5,5 '-tetramethylbenzidine (TMB) as an indicator and the reactive intermediates in the photocatalytic systems are identified by in situ ESR detection. The results confirm that the optimized Pd/MIL-125-NH2 hybrid catalyst possesses higher ability for molecule activation and that both superoxide radical (O-2(-)) and singlet oxygen (O-1(2)) are the dominant oxidative species in the present photocatalytic system. Therefore, the dual advantages of Pd/MIL-125-NH2 hybrid structures for promoting the photogenerated charge transfer/separation and providing highly catalytic sites for molecule activation contribute to higher photocatalytic activity.
机译:而多相光催化作用被认为是一个可持续发展的战略来实现有机反应生产高附加值的有机物,光催化效率一般受限于贫穷的电荷分离,沉闷的表面催化活性和因此引起的不足一代的活性物种。在此,有机的混合结构框架(mof)合并与Pd超小纳米晶体合成,他们光催化性能的评估苄胺的氧化耦合模型的反应。Pd / mil - 125 - nh2的混合材料的最佳Pd加载大大地优于原始的mil - 125 -氨基,实现高苄胺转化率3136亩摩尔h (1)g(猫)(1)在94.08%的转换。电荷转移和分离在Pd / mil - 125 -氨基光致发光光谱验证了吗和光电化学实验。Photogenerated活性氧是探测3,3 ', 5、5 ' -tetramethylbenzidine(三甲)作为一个指标和活性中间体光催化系统被原位ESR检测。优化Pd / mil - 125 - nh2混合催化剂拥有更高的能力分子激活和这两个超氧化物自由基(o2 (-))单线态氧(1)(2)占主导地位在目前光催化氧化物种系统。Pd / mil - 125 - nh2促进混合结构photogenerated电荷转移/分离和提供高度催化分子的网站激活导致更高的光催化活动。

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