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首页> 外文期刊>Nanoscale >Synthesis of organic-inorganic hybrids via a high-pressure-ramp process: the effect of inorganic nanoparticle loading on structural and photochromic properties
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Synthesis of organic-inorganic hybrids via a high-pressure-ramp process: the effect of inorganic nanoparticle loading on structural and photochromic properties

机译:通过一个合成有机-无机混合动力车high-pressure-ramp过程:的效果无机纳米颗粒结构和加载光致变色性质

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摘要

Organic polymerization remains a limiting step in the preparation of organic-inorganic hybrid materials with a strong concentration of the inorganic component. In this work, a high-pressure-ramp process was applied to achieve pHEMA-TiO2 nanoparticulate solids with an unprecedentedly high concentration (12 mol l(-1)) of the inorganic component, which is four times higher than that obtained after radical polymerization induced thermally or by photons. The inorganic nanoparticles underwent morphological and structural changes with an increase of Ti concentration above 1.5 mol l(-1): they slightly coarsen and crystallize into an anatase polymorph. The material possesses a strong photochromic response related to the electron-hole separation at the organic-inorganic interface and can store 1e(-) per 5 Ti atoms. The electron storage capacity of the titania nanoparticles decreases upon crystallization.
机译:有机聚合仍然是一个限制介入有机-无机杂化的准备材料与强烈的浓度无机成分。high-pressure-ramp过程应用于实现pHEMA-TiO2 nanoparticulate固体的空前高浓度(12摩尔l (1))的无机成分,这是四次高于激进后获得聚合诱导热或光子。无机纳米粒子进行了形态和结构变化增加钛浓度高于1.5摩尔l (1):他们稍微变粗糙和结晶成一个锐钛矿变形。强烈的光致变色反应相关电子空穴在有机-无机分离接口,可以存储1 e(-) / 5钛原子。二氧化钛的电子存储容量在结晶纳米颗粒减少。

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