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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Dramatic visible activity in phenol degradation of TCNQ@TiO2 photocatalyst with core-shell structure
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Dramatic visible activity in phenol degradation of TCNQ@TiO2 photocatalyst with core-shell structure

机译:具有核-壳结构的TCNQ @ TiO2光催化剂在苯酚降解中具有显着的可见活性

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摘要

TCNQ.@TiO2 visible photocatalyst with core-shell structure was synthesized by adsorption methods. The photocatalytic activity was adjusted by the thickness of the shell. After formation of TCNQ@TiO2 core-shell structure, visible light photoactivity can be obtained. The photocatalyst activity of TCNQ@TiO2 was enhanced gradually with the increasing proportion of TCNQ, When the mass fraction of TCNQ reaches 20%, it exhibits the highest visible activity. The apparent rate constant k of TCNQ@TiO2-20% is 0.2583 h~(-1), which is almost 67.9 times as high as that of pure TiO2. Under visible irradiation, the photogenerated holes on the HOMO orbit of TCNQ. can be injected into the VB of TiO2, resulting in the oxidation of organic pollutant directly. However, the energy of the holes injected into the VB of TiO2 is not high enough to mineralize phenol completely. Under UV irradiation, the photogenerated electrons on the CB of TiO2 can be injected into the LUMO orbit of TCNQ, which is too low that electrons could not combine with O2 easily, interdicting the formation of superoxide radicals and resulting in the decrease of photoactivity.
机译:采用吸附法合成了具有核-壳结构的TCNQ。@ TiO2可见光催化剂。通过壳的厚度调节光催化活性。形成TCNQ @ TiO2核-壳结构后,可获得可见光光敏性。随着TCNQ比例的增加,TCNQ @ TiO2的光催化活性逐渐增强,当TCNQ的质量分数达到20%时,可见光活性最高。 TCNQ @ TiO2-20%的表观速率常数k为0.2583 h〜(-1),约为纯TiO2的67.9倍。在可见光照射下,TCNQ HOMO轨道上的光生空穴。可将其注入TiO2的VB中,直接导致有机污染物的氧化。但是,注入到TiO2 VB中的空穴的能量不足以完全使苯酚矿化。在紫外线照射下,TiO2 CB上的光生电子可以注入到TCNQ的LUMO轨道中,太低了,电子不易与O2结合,阻止了超氧自由基的形成,导致光活性降低。

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