标题: 具非等向性结构之钯奈米晶体作为甲酸氧化之电化学触媒研究
Anisotropic Palladium Nanocrystals as Electrocatalyst for Formic Acid Oxidation
作者: 方郁歆
Fan, Yu-Sin
徐雍蓥
Hsu, Yung-Jung
材料科学与工程学系
关键字: 钯;甲酸;触媒;Palladium;formic acid;catalytic
公开日期: 2009
摘要: 在此论文,我们成功利用一存在PVP水溶液的系统,以化学还原法合成出不同形状的钯奈米晶体,包括奈米板状,八面体,孔状和中空状。我们使用PdCl2 当前驱物而PVP扮演还原剂和稳定剂,另外我们加入一些特定的盐类如NaCl和NH4OH。在此合成系统中,钯奈米晶体之形貌与尺寸可藉由相关反应条件之操控来调整,例如PdCl2和盐类的莫耳数和反应温度。我们将四种不同钯奈米型状应用电化学活性中的甲酸氧化和氢气的吸脱附,我们可以发现不同的形状在甲酸氧化有不同的现象。非等向结性构的钯奈米晶体亦应用在表面增强拉曼,由于钯奈米形状不同影响有机分子在拉曼的灵敏度。
In this thesis, we successfully synthesized various palladium (Pd) nanocrystals including nanoplates, octahedrons, porous nanocrystals, and hollow nanocrystals in the PVP-assisted chemical reduction process. The synthesis involved only the use of PdCl2 as the precursor, PVP as the reducing and stabilizing agents, and a specific salt like NaCl or NH4OH as the additive. By modulating the relevant reaction conditions such as the amount of PdCl2, the amount of additive, and the reaction temperature, we were able to obtain Pd nanocrystals with controllable morphologies. The four types of Pd nanocrystals exhibited notable electrocatalytic activities toward formic acid oxidation and hydrogen adsorption/desorption. Surface-enhanced Raman spectroscopy for the anisotropically-shaped Pd of nanoplates and octahedrons was also investigated to demonstrate their potential as an active substrate for Raman-sensitive analyte molecules.
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT079718533
http://hdl.handle.net/11536/44921
显示于类别:Thesis


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