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Versatile Dendritic Silica & Titania-supported Platinum Catalyst for Highly Efficient Water Splitting and p-Nitrophenol Reduction

机译:多功能树突状二氧化硅和泰坦尼亚支持的铂催化剂,用于高效水和p-硝基苯酚还原

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摘要

p-Nitrophenol acts as a notorious environmentally hazardous material.The reduction of nitro group(-NO2)to amino group(-NH2)with the assistance of catalyst has been regarded as one of the most reasonable methods to dispose p-nitrophenol.Herein,for the first time,we construct a novel dendritic silica & titania-supported platinum(Pt)nanocatalyst which can reduce p-nitrophenol with the bigger apparent first-order rate constant than almost all previously reported.Besides,the catalyst can split water under simulated sunlight with a H2 yield of 493.6 μmol·1 in 5 hours,nearly 240-folds of dendritic silicasupported Pt.The improvements in catalytic performances can be attributed to special structural advantages of dendritic support,chemical composition of anatase titania(TiO2),and localized surface plasmon resonance(LSPR)effect from Pt nanoparticles(NPs).This catalyst exhibits desirable robustness,stability,and reusability,because of the hybrid architecture and the high affinity of the functionalized interface to Pt NPs.
机译:硝基苯酚充当臭名昭著的环境危险物质。在催化剂的辅助下,硝基组(-no2)的减少为氨基(-NH2)被认为是处置p-硝基苯酚的最合理方法之一。我们第一次构建了一种新型的树突状二氧化硅和钛二铂(PT)纳米催化剂,该纳米催化剂可以减少P-硝基苯酚,而几乎所有先前报道的明显的一阶速率常数。BesiDES,催化剂可以在模拟下分裂的水分分裂的水H2产量为493.6μmol·1的阳光在5小时内,近240倍的树突状硅基供应PT。催化性能的改善可以归因于树突质支持的特殊结构优势,剖析酶的化学成分(TIO2)及其本地化(TIO2),及其局部化。 PT纳米颗粒(NPS)的表面等离子体共振(LSPR)效应。由于杂交结构和功能的高亲和力,该催化剂表现出理想的鲁棒性,稳定性和可重复性lized接口到pt nps。

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