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首页> 外文期刊>Applied Surface Science >Solvothermal fabrication of TiO_2/sepiolite composite gel with exposed {001} and {101} facets and its enhanced photocatalytic activity
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Solvothermal fabrication of TiO_2/sepiolite composite gel with exposed {001} and {101} facets and its enhanced photocatalytic activity

机译:{001}和{101}小面暴露的TiO_2 /海泡石复合凝胶的溶剂热制备及其增强的光催化活性

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摘要

A novel TiO2/sepiolite composite gel (TiSG) was fabricated in the presence of cetyltrimethylammonium bromide (CTAB) through a simple solvothermal reaction in an acetic acid-water solvent. A homogeneous anchoring of TiO2 nanoparticles with exposed {001} and {101} facets on sepiolite nanofibers was achieved. CTAB content, solvothermal temperature/time, and HAc content play crucial roles in the morphological and facet formation of TiSG. A possible mechanism for the formation of TiSG was further proposed. CTAB as capping/shape-controlling agent can strongly bind to the more reactive (001) facet of TiO2 and then mitigate the thermodynamically favored (001) plane growth. Eventually, the truncated octahedral TiO2 was obtained by controlling the growth rates in (001) and (101) directions. Sepiolite as a cross-linking agent provides sufficient crosslinking sites for TiO2 to induce three-dimensional (3D) network formation, thereby generating the composite gel. The synthesized TiSG samples were then used as photocatalysts, which exhibited increased methyl orange removal under UV-vis light (350-780 nm) by the synergistic effect of adsorption and in-situ photocatalytic degradation as compared to P25 and bare TiO2. The excellent photocatalytic performance of TiSG was mainly ascribed to the formations of 3D gel structure and surface heterojunctions between (001) and (101) facets. (C) 2018 Published by Elsevier B.V.
机译:在乙酸-水溶剂中,通过简单的溶剂热反应,在十六烷基三甲基溴化铵(CTAB)存在下,制备了新型的TiO2 /海泡石复合凝胶(TiSG)。实现了具有暴露的{001}和{101}面的TiO2纳米颗粒在海泡石纳米纤维上的均匀锚固。 CTAB含量,溶剂热温度/时间和HAc含量在TiSG的形态和刻面形成中起着至关重要的作用。进一步提出了形成TiSG的可能机制。 CTAB作为封端剂/形状控制剂可以牢固地结合到TiO2的更具反应性(001)的面上,然后减轻热力学上有利的(001)平面的生长。最终,通过控制(001)和(101)方向的生长速率获得了截短的八面体TiO2。海泡石作为交联剂可为TiO2提供足够的交联位点,以诱导三维(3D)网络的形成,从而生成复合凝胶。然后将合成的TiSG样品用作光催化剂,与P25和裸露的TiO2相比,在紫外可见光(350-780 nm)下,由于吸附和原位光催化降解的协同作用,甲基橙的去除率增加。 TiSG的优异光催化性能主要归因于3D凝胶结构的形成以及(001)和(101)面之间的表面异质结。 (C)2018由Elsevier B.V.发布

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