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One-step synthesis of cross-linked and hollow microporous organic-inorganic hybrid nanoreactors for selective redox reactions

机译:一步法合成交联和空洞微孔有机-无机杂化nanoreactors对选择性氧化还原反应

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摘要

Hollow microporous nanostructures (HMNs) are powerful platforms for multiple promising applications, including energy storage, drug/gene delivery, nanoreactors/catalysis, adsorption, and separation. Herein, we report a facile one-step method to synthesize highly cross-linked organic-inorganic hybrid poly(cyclotriphosphazene-co-4,4 '-sulfonyldiphenol) (PZS) HMNs via a salt-induced liquid-liquid separation process. The size of inner cavities can be properly tuned by modulating the concentration of the NaOH solution. The regulation mechanism of the PZS HMNs was further confirmed by encapsulating water-dispersed Pt nanoclusters into the cavities. Interestingly, the resulting yolk-shell Pt@PZS serves as nanoreactors and exhibits excellent substrate selectivity and recyclability for the catalytic oxidation of 1,3,5-trimethylbenzene.
机译:空心纳米结构微孔(下午)多个承诺的有力平台应用程序,包括能量储存,药物/基因交付,nanoreactors /催化、吸附和分离。方法合成高度交联有机-无机杂化保利(cyclotriphosphazene-co-4 4“-sulfonyldiphenol) (pz)通过salt-induced休斯顿自然科学博物馆液-液分离的过程。内部蛀牙可以适当调整调制氢氧化钠的浓度解决方案。下午进一步证实了封装water-dispersed Pt纳米束进入蛀牙。Pt@PZS作为nanoreactors和展品优秀的底物选择性和再循环能力的催化氧化1、3、5-trimethylbenzene。

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