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In-situ growth of N-TiO2 on delaminated N-Ti3C2 with highly strengthened photocatalytic activity

机译:N-TiO2在光催化活性高的脱层N-Ti3C2上原位生长

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摘要

Herein, a collection of N-TiO2/delaminated N-Ti3C2 (NTTx) composites is designed and synthesized by one-step calcination of NH4Cl-Ti3C2 precursors. The thermal decomposition of NH4Cl not only serves as the gas template to make the delamination of Ti3C2, but also acts as N source to for doping. As expected, the N-TiO2 nanoparticles uniformly anchor on the surface and interlayer of Ti3C2 nanosheets with intimate contact. Both the photocatalytic degradation rate of Rh-B and photocatalytic nitrogen fixation experiments of NTT2 composites show higher performance than that of pure P25 and NTT0 under visible light irradiation. The strengthened photocatalytic activity is due to the decrease of band gap by N doping in TiO2 and excellent electrical conductivity of N-Ti3C2, which leads to enhanced light response and photogenerated electron-hole separation, respectively. This study develops a new strategy to design efficient photocatalysts for degradation of contaminants and fixation of nitrogen.(c) 2022 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:本文通过NH4Cl-Ti3C2前驱体的一步煅烧,设计合成了N-TiO2/分层N-Ti3C2(NTTx)复合材料。NH4Cl的热分解不仅作为使Ti3C2分层的气体模板,而且作为掺杂的N源。正如预期的那样,N-TiO2纳米颗粒均匀地锚定在Ti3C2纳米片的表面和夹层上,紧密接触。在可见光照射下,NTT2复合材料的Rh-B光催化降解率和光催化固氮实验均表现出比纯P25和NTT0更高的性能。由于TiO2中N掺杂减小了带隙,N-Ti3C2优异的导电性增强了光催化活性,分别增强了光响应和光生电子-空穴分离。本研究开发了一种设计高效光催化剂的新策略,用于降解污染物和固氮。(c) 2022 Hydrogen Energy Publications LLC.,由爱思唯尔有限公司出版。保留所有权利。

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