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Effects of activated carbon characteristics on the electrosorption capacity of titanium dioxide/activated carbon composite electrode materials prepared by a microwave-assisted ionothermal synthesis method

机译:活性炭特性对微波辅助电热合成法制备二氧化钛/活性炭复合电极材料电吸附能力的影响

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Titanium dioxide (TiO2)/ activated carbon (AC) composite materials, as capacitive deionization electrodes, were prepared by a two-step microwave-assisted ionothermal synthesis method. The electrosorption capacity of the composite electrodes was studied and the effects of AC characteristics were explored. These effects were investigated by multiple analytical techniques, including X-ray photoelectron spectroscopy, thermogravimetry analysis and electrochemical impedance spectroscopy, etc. The experimental results indicated that the electrosorption capacity of the TiO2/AC composite electrode is dependent on the characteristics of AC including the pore structure and the surface property. An enhancement in electrosorption capacity was observed for the TiO2/AC composite electrode prepared from the AC with higher mesopore content and less hydrophilic surface. This enhancement is due to the deposition of anatase TiO2 with suitable amount of Ti-OH. On the other hand, a decline in electrosorption capacity was observed for the TiO2/AC composite electrode prepared from the AC with higher micropore content and highly hydrophilic surface. High content of hydrogen bond complex formed between the functional group on hydrophilic surface with H2O, which will slow down the TiO2 precursor-H2O reaction. In such situation, the effect of TiO2 becomes unfavorable as the loading amount of TiO2 is less and the micropore can also be blocked. (C) 2014 Elsevier Inc. All rights reserved.
机译:采用两步微波辅助电热合成法制备了二氧化钛(TiO2)/活性炭(AC)复合材料作为电容性去离子电极。研究了复合电极的电吸附能力,探讨了交流电特性的影响。通过X射线光电子能谱,热重分析和电化学阻抗谱等多种分析技术研究了这些效应。实验结果表明,TiO2 / AC复合电极的电吸附能力取决于包括孔隙在内的AC特性。结构和表面性质。由具有较高的中孔含量和较少的亲水性表面的AC制备的TiO 2 / AC复合电极观察到电吸附能力的增强。这种增强是由于锐钛矿型TiO2沉积有适量的Ti-OH。另一方面,观察到由具有更高的微孔含量和高亲水性表面的AC制备的TiO 2 / AC复合电极的电吸附能力下降。亲水表面上的官能团与H2O之间形成的氢键络合物含量较高,这会减慢TiO2前体与H2O的反应。在这种情况下,由于TiO 2的负载量较少,因此TiO 2的作用变得不利,并且微孔也可以被阻塞。 (C)2014 Elsevier Inc.保留所有权利。

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