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Co/C复合材料的制备及其对中性红的吸附性能
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作者 李康 蔡娟娟 张利雄 《南京工业大学学报(自然科学版)》 CAS 北大核心 2021年第6期730-738,745,共10页
通过将沸石咪唑盐骨架67(ZIF-67)晶体在不同温度(600、700、800、900和1000℃)的N2气氛中碳化,制得磁性多孔Co/C复合材料,将其用于中性红(NR)的吸附。考察吸附温度、NR初始质量浓度、吸附剂用量及pH等因素对吸附量的影响。结果表明:随... 通过将沸石咪唑盐骨架67(ZIF-67)晶体在不同温度(600、700、800、900和1000℃)的N2气氛中碳化,制得磁性多孔Co/C复合材料,将其用于中性红(NR)的吸附。考察吸附温度、NR初始质量浓度、吸附剂用量及pH等因素对吸附量的影响。结果表明:随着碳化温度的升高,Co/C复合材料比表面积由365 m^(2)/g逐渐减小到111 m^(2)/g;ZIF-67碳化温度为800℃时得到的Co/C的总孔体积最大,达到0.198 cm^(3)/g,且对NR的吸附性能最好,在5 h内达到吸附饱和;溶液温度为30℃、NR初始质量浓度为125 mg/L、吸附剂用量为3 mg、pH=7时得到的最大吸附量为985 mg/g。采用拟二阶方程对吸附动力学数据进行拟合,得到最大吸附量为1013 mg/g,800℃碳化的Co/C吸附NR后在甲醇溶液中脱附再吸附,循环5次后,吸附量维持在最高值的92%以上,且易于通过磁分离而回收。对Co/C复合材料吸附机制的研究表明,Co颗粒与碳材料的协同作用使得Co/C复合材料对NR具有较高吸附量。 展开更多
关键词 ZIF-67 co/c复合材料 中性红 吸附性能
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ZIF-67 derived C&Co counter electrode in dye-sensitized solar cells
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作者 SUN Zhenfan HE Yunxiao +1 位作者 QIAO Xiaodong LEI Bingxin 《分子科学学报》 CAS 2024年第3期239-246,共8页
ZIF-67 containing cobalt cation was selected as the research object,and the carbon-containing cobalt matrix nanocomposite(C&Co)was obtained after heat treatment in a nitrogen atmosphere at the appropriate temperat... ZIF-67 containing cobalt cation was selected as the research object,and the carbon-containing cobalt matrix nanocomposite(C&Co)was obtained after heat treatment in a nitrogen atmosphere at the appropriate temperature.The nanostructures and morphologies of the nanocomposite were analyzed by X-ray diffraction,field emission scanning electron microscopy,transmission electron microscopy,and X-ray photoelectron spectroscopy.The electrochemical response was comprehensively characterized by cyclic voltammetry,electrochemical impedance spectroscopy,and Tafel polarization.The electrochemical analysis of the C&Co nanocomposite electrode shows that the electrode has an obvious electrocatalytic activity for the reduction of the triiodide compound.The conversion efficiency of dye-sensitized solar cells prepared with C&Co nanocomposite electrode shows 5.3%under the condition of AM1.5G simulated sunlight irradiation,which shows great application potential in Pt-free electrode materials. 展开更多
关键词 dye-sensitized solar cells counter electrode MOFS c&co nanocomposite
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