Wang Mengmeng, Chen Dongyun, Li Najun, Xu Qingfeng, Li Hua, He Jinghui, Lu Jianmei
College of Chemistry, Chemical Engineering and Materials Science, Collaborative Innovation Center of Suzhou Nano Science and Technology, Soochow University, Suzhou 215123, China.
ACS Appl Mater Interfaces. 2020 Mar 25;12(12):13781-13789. doi: 10.1021/acsami.9b20929. Epub 2020 Mar 10.
ZrO nanotube arrays and their supported bimetallic platinum and ruthenium (PtRu/ZrO; + = 1 mmol %, / = 1:0, 0.9:0.1, 0.8:0.2, 0.7:0.3, 0.5:0.5, 0:1) nanocomposites were fabricated by employing SBA-15-OH as a hard template and an impregnation method, respectively. A controlled ordered nanotube array structure formed from the fabricated catalysts, and it showed a good performance for toluene oxidation. The specific physicochemical properties of the catalysts were examined through various analytical means. The PtRu/ZrO possessed a high surface area, and the Pt-Ru nanoparticles were dispersed uniformly on the ZrO nanotube surface. The PtRu/ZrO catalyst performed best among all of the samples, with and (temperatures for 90 and 100% conversion of toluene) of 140 and 160 °C, respectively, at a weight hourly space velocity of 36 000 mL/(h·g). These bimetallic catalysts exhibit excellent characteristics for toluene oxidation, such as higher turnover frequencies and lower apparent activation energy () values, which probably result from the synergistic effect of the Pt-Ru noble metals that leads to a high reducibility and oxygen adsorption capacity. The excellent activity, stability, and economics of the PtRu/ZrO catalyst allow for its application in toluene removal.
分别采用SBA - 15 - OH作为硬模板和浸渍法制备了ZrO纳米管阵列及其负载的双金属铂和钌(PtRu/ZrO;+ = 1 mmol%,/ = 1:0、0.9:0.1、0.8:0.2、0.7:0.3、0.5:0.5、0:1)纳米复合材料。所制备的催化剂形成了可控的有序纳米管阵列结构,并且对甲苯氧化表现出良好的性能。通过各种分析手段对催化剂的具体物理化学性质进行了研究。PtRu/ZrO具有高比表面积,Pt - Ru纳米颗粒均匀分散在ZrO纳米管表面。在所有样品中,PtRu/ZrO催化剂表现最佳,在重量空速为36000 mL/(h·g)时,甲苯90%和100%转化的温度()分别为140和160 °C。这些双金属催化剂对甲苯氧化表现出优异的特性,如更高的周转频率和更低的表观活化能()值,这可能是由于Pt - Ru贵金属的协同效应导致高还原性和氧吸附能力。PtRu/ZrO催化剂优异的活性、稳定性和经济性使其可应用于甲苯去除。