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乙酸酐作为氧供体在非水解溶胶-凝胶法合成具有高电化学锂存储性能的介孔 TiO 中的应用。

Acetic Anhydride as an Oxygen Donor in the Non-Hydrolytic Sol-Gel Synthesis of Mesoporous TiO with High Electrochemical Lithium Storage Performances.

机构信息

Institut Charles Gerhardt, Universite de Montpellier, 2 Place Eugène Bataillon, Montpellier, 34095, France.

IUT Montpellier, Universite de Montpellier, 2 Place Eugène Bataillon, Montpellier, 34095, France.

出版信息

Chemistry. 2019 Mar 27;25(18):4767-4774. doi: 10.1002/chem.201806073. Epub 2019 Mar 4.

Abstract

An original, halide-free non-hydrolytic sol-gel route to mesoporous anatase TiO with hierarchical porosity and high specific surface area is reported. This route is based on the reaction at 200 °C of titanium(IV) isopropoxide with acetic anhydride, in the absence of a catalyst or solvent. NMR spectroscopic studies indicate that this method provides an efficient, truly non-hydrolytic and aprotic route to TiO . Formation of the oxide involves successive acetoxylation and condensation reactions, both with ester elimination. The resulting TiO materials were nanocrystalline, even before calcination. Small (about 10 nm) anatase nanocrystals spontaneously aggregated to form mesoporous micron-sized particles with high specific surface area (240 m  g before calcination). Evaluation of the lithium storage performances shows a high reversible specific capacity, particularly for the non-calcined sample with the highest specific surface area favouring pseudo-capacitive storage: 253 mAh g at 0.1 C and 218 mAh g at 1 C (C=336 mA g ). This sample also shows good cyclability (92 % retention after 200 cycles at 336 mA g ) with a high coulombic efficiency (99.8 %). Synthesis in the presence of a solvent (toluene or squalane) offers the possibility to tune the morphology and texture of the TiO nanomaterials.

摘要

本文报道了一种通过卤化物-无水解溶胶-凝胶途径制备具有分级孔结构和高比表面积的介孔锐钛矿 TiO 的新方法。该方法以钛(IV)异丙醇盐与乙酸酐在 200°C 下反应为基础,无需催化剂或溶剂。NMR 光谱研究表明,该方法提供了一种高效、真正非水解和非质子的 TiO 合成途径。氧化物的形成涉及连续的乙酰氧基化和缩合反应,均伴随着酯消除。所得 TiO 材料是纳米晶的,甚至在煅烧之前也是如此。小(约 10nm)锐钛矿纳米晶自发聚集形成具有高比表面积的介孔微米级颗粒(煅烧前为 240m2/g)。对锂存储性能的评估表明,具有高可逆比容量,特别是具有最高比表面积的未煅烧样品表现出赝电容存储特性:在 0.1C 时为 253mAh/g,在 1C 时为 218mAh/g(C=336mA/g)。该样品还具有良好的循环稳定性(在 336mA/g 下 200 次循环后保留率为 92%),库仑效率高(99.8%)。在溶剂(甲苯或角鲨烷)存在下进行合成,可调节 TiO 纳米材料的形貌和结构。

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