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首页> 外文期刊>CERAMICS INTERNATIONAL >An improved carbothermal process for the synthesis of fine-grained boron carbide microparticles and their photoelectrocatalytic activity
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An improved carbothermal process for the synthesis of fine-grained boron carbide microparticles and their photoelectrocatalytic activity

机译:一种改进的碳水方法,用于合成细粒碳化硼微粒及其光电催化活性

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摘要

Herein we develop an improved carbothermal process using cellulose as organic carbon resources to synthesize uniform B4C particles in fine-grained size. The improvement of the proposed carbothermal processes lies in two points: (i) we use immiscible hexane/water solvents to obtain high-dispersed boric acid (BA), which promotes the esterification of BA with organic carbon; (ii) the boron oxide/carbon resources are ground sufficiently before high-temperature carbonization. The purpose of these two procedures is to increase the homogeneity of precursors, and their effects on the final crystalline structure and morphology of B4C are studied systematically. The results show that uniform fine-grained B4C in about 4 mu m is successfully fabricated, indicating the homogeneity of precursors can effectively meliorate the B4C powder in a smaller size. The photoelectrochemical and photoeldctrocatalytic performances of the as-prepared fine-gained B4C powder are also investigated. Interestingly, the fine B4C microparticles exhibited a good photoelectrocatalytic hydrogen generation activity in water reduction.
机译:在此,我们使用纤维素作为有机碳资源开发一种改善的碳热过程,以合成细粒尺寸的均匀B4C颗粒。所提出的碳水过程的改善在于两点:(i)我们使用不混溶的己烷/水溶剂来获得高分散的硼酸(BA),促进BA的酯化与有机碳; (ii)在高温碳化前充分研磨氧化硼/碳资源。这两种方法的目的是提高前体的均匀性,系统地研究了对B4C的最终结晶结构和形态的影响。结果表明,成功制造了约4μm的均匀细粒粒B4c,表明前体的均匀性可以有效地使B4C粉末以较小尺寸的粒度过生。还研究了由制备的精细获得的B4C粉末的光电化学和光克隆催化性能。有趣的是,细B4C微粒在水还原中表现出良好的光电催化氢产生活性。

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