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作 者:毕立华[1] 刘建允[1] 申燕[1] 蒋俊光[1] 汪尔康[1] 董绍俊[1]
机构地区:[1]中国科学院长春应用化学研究所电分析化学国家重点实验室,长春130022
出 处:《高等学校化学学报》2002年第3期472-474,共3页Chemical Journal of Chinese Universities
基 金:国家自然科学基金 (批准号 :2 983 5 12 0和 2 9875 0 2 8)资助
摘 要:A novel sandwich\|type compound, Na\-\{12\}\[Fe\-4(H\-2O)\-2(As\-2W\-\{15\}O\-\{56\})\-2\]\538H\-2O(denoted as Fe\-4As\-4W\-\{30\}) was synthesized. The compound was well characterized by means of IR, UV\|Vis, \{\{\}\+\{183\}W NMR\} and elemental analyses. Redox electrochemistry of the compound has been studied in acid buffer solutions using cyclic voltammetry(CV). The compound containing multilayer films has been fabricated on the 4\|aminobenzoic acid(4\|ABA) modified glassy carbon electrode(GCE) surface by alternate deposition with a quaternized poly(4\|vinylpyridine) partially completed with \[Os(bpy)\-2Cl\]\+\{2+/-\}(denoted as QPVP\|Os). CV, X\|ray photoelectron spectroscopy(XPS) and UV\|Vis spectroscopy were used to characterize the as\|prepared multilayer films. It is proved that the multilayer films are uniform and stable. The electrocatalytic activities of the multilayer films were investigated on the reduction of two substrates of important analytical interest, NO\+-\-2 and H\-2O\-2.A novel sandwich\|type compound, Na\-\{12\}\[Fe\-4(H\-2O)\-2(As\-2W\-\{15\}O\-\{56\})\-2\]\538H\-2O(denoted as Fe\-4As\-4W\-\{30\}) was synthesized. The compound was well characterized by means of IR, UV\|Vis, \{\{\}\+\{183\}W NMR\} and elemental analyses. Redox electrochemistry of the compound has been studied in acid buffer solutions using cyclic voltammetry(CV). The compound containing multilayer films has been fabricated on the 4\|aminobenzoic acid(4\|ABA) modified glassy carbon electrode(GCE) surface by alternate deposition with a quaternized poly(4\|vinylpyridine) partially completed with \[Os(bpy)\-2Cl\]\+\{2+/-\}(denoted as QPVP\|Os). CV, X\|ray photoelectron spectroscopy(XPS) and UV\|Vis spectroscopy were used to characterize the as\|prepared multilayer films. It is proved that the multilayer films are uniform and stable. The electrocatalytic activities of the multilayer films were investigated on the reduction of two substrates of important analytical interest, NO\+-\-2 and H\-2O\-2.
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