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合成 TiO2 负载活性炭作为有效的离子电吸附材料。

Synthesis of TiO2-incorporated activated carbon as an effective Ion electrosorption material.

机构信息

Faculty of Engineering, Chemical Engineering Department, Minia University, El-Minia, Egypt.

Department of Mechanical Engineering, College of Engineering, Qassim University, Buraydah, Saudi Arabia.

出版信息

PLoS One. 2023 Mar 23;18(3):e0282869. doi: 10.1371/journal.pone.0282869. eCollection 2023.

Abstract

Efficient, chemically stable and cheap materials are highly required as electrodes in the ions-electrosorption-based technologies such as supercapacitors and capacitive deionization desalination. Herein, facile preparation of titanium oxide-incorporated activated carbon using cheap precursors is introduced for this regard. The proposed material was synthesized using the solubility power of the subcritical water to partially dissolve titanium oxide particles to be adsorbable on the surface of the activated carbon. Typically, an aqueous suspension of commercial TiO2 particles (P25) and activated carbon was autoclaved at 180°C for 10 h. The physiochemical characterizations indicated high and uniform distribution of the inorganic material on the surface of the activated carbon. The ionic electrosorption capacity was highly improved as the specific capacitance increased from 76 to 515 F/g for the pristine and modified activated carbon, respectively at 5 mV/s in 0.5 M sodium chloride solution. However, the weight content of titanium oxide has to be adjusted; 0.01% is the optimum value. Overall, the study introduces novel and simple one-pot procedure to synthesis powerful titanium oxide-based functional materials from cheap solid titanium precursor without utilization of additional chemicals.

摘要

在基于离子吸附的技术(如超级电容器和电容去离子脱盐)中,作为电极需要高效、化学稳定且廉价的材料。在此,介绍了一种使用廉价前体制备钛氧化物掺杂活性炭的简便方法。该材料是通过亚临界水的溶解能力部分溶解钛氧化物颗粒,使其能够吸附在活性炭表面来合成的。通常,将商业 TiO2 颗粒(P25)和活性炭的水溶液在 180°C 下高压釜处理 10 小时。物理化学特性表明,无机材料在活性炭表面均匀分布。在 0.5 M 氯化钠溶液中,以 5 mV/s 的扫描速率,比电容分别从原始活性炭的 76 F/g 增加到改性活性炭的 515 F/g,离子电吸附容量得到了极大的提高。然而,钛氧化物的重量含量需要进行调整;0.01%是最佳值。总的来说,该研究介绍了一种新颖而简单的一锅法,从廉价的固体钛前体制备基于钛氧化物的高效功能材料,而无需使用额外的化学物质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa5e/10035829/787defdc50a4/pone.0282869.g001.jpg

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