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Mesoporous nanotube aggregates obtained from hydrothermally treating TiO_2 with NaOH

机译:NaOH对TiO_2进行热处理的中孔纳米管聚集体。

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摘要

Nanotube aggregates with high porosity were prepared from hydrothermal treatment of TiO_2 particles in NaOH at 130℃, followed by HCl rinsing to different pH values. Pore structure of the aggregates, which were mainly mesoporous, was characterized by analyzing the N_2 sorption isotherm with different methods including the t-plot and density function theory. The surface area, pore volume and mean pore size of the aggregates increased with the rinsing acidity to reach a maximum (e.g. 400 m~2/g in surface area) at pH 1.6 and then decreased with further increase of the acidity. The crystalline phase and composition of the aggregates were, as well, significantly affected by the acidity of the post-treatment rinsing. Large-surface area aggregates were of loosely-attached nanotubes, composed of both anatase TiO_2 and H_2Ti_2O_5·H_2O, obtained under a mildly acidic rinsing condition, while basic or highly acidic conditions resulted in the formation of closely coagulated dense structures consisting of different crystalline phases.
机译:先在130℃的NaOH中对TiO_2颗粒进行水热处理,然后用HCl冲洗至不同的pH值,制备出高孔隙率的纳米管聚集体。聚集体的孔结构主要为介孔结构,通过t-图和密度泛函理论等不同方法分析了N_2的吸附等温线。聚集体的表面积,孔体积和平均孔径随着漂洗酸度的增加而增加,在pH 1.6时达到最大值(例如表面积为400m 2 / g),然后随着酸度的增加而减小。聚集体的结晶相和组成也受到后处理冲洗酸度的显着影响。大表面积的聚集体是由锐钛矿型TiO_2和H_2Ti_2O_5·H_2O组成的松散附着的纳米管,在轻度酸性漂洗条件下获得,而碱性或高度酸性条件导致形成由不同晶相组成的紧密凝结的致密结构。

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