首页> 外文期刊>Journal of Coordination Chemistry >Spectroscopic, electrochemical and X-ray crystallographic properties of a novel palladium(II) complex of thioamide deprotonated di-2-pyridyl ketone thiosemicarbazone (dpktsc-H)(-)
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Spectroscopic, electrochemical and X-ray crystallographic properties of a novel palladium(II) complex of thioamide deprotonated di-2-pyridyl ketone thiosemicarbazone (dpktsc-H)(-)

机译:硫代酰胺的新型钯(II)络合物的光谱,电化学和X射线晶体特性去质子化二-2-吡啶基酮硫代吡啶(DPKTSC-H)( - )

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摘要

The reaction between di-2-pyridyl ketone thiosemicarbazone (dpktsc) and PdCl2(CH3CN)(2), generated in situ from the reaction between PdCl2 and CH3CN, gave the unprecedented [Pd2Cl3((5)-N-py,N-im,S,N-py,N-am-dpktsc-H)]2CH(3)CN (1) complex (py = pyridine, im = imine and am = amide). The identity of 1 was confirmed via its elemental analysis and spectroscopic properties. Infrared and H-1-NMR spectra confirmed the coordination of (dpktsc-H)(-) to the palladium ions. The electronic absorption spectra measured in dmso and dmf and density functional theory (DFT) calculations revealed metal-to-ligand charge-transfer (MLCT), d-d and intra-ligand charge-transfer (ILCT) electronic transitions. X-ray structural analysis on a crystal of [Pd2Cl3((5)-N-py,N-im,S,N-py,N-am-dpktsc-H)]H2O (2) grown from dmf solution of 1 confirmed its formulation and showed the solid-state structure contains a web of molecules locked via a network of non-covalent interactions. Electrochemical measurements on 1 in dmf revealed metal- and ligand-based redox processes. In contrast to the electrochemical decomposition of uncoordinated dpktsc, coordinated (dpktsc-H)(-) in 1 does not undergo electrochemical decomposition. Electrochemical titrations of 1 with p-toluenesulfonic acid monohydrate (p-TSOH) revealed electro-catalytic proton reduction. Over-potential () of 180mV for the H-2 evolution was observed and is comparable to several molecular electro-catalysts for proton reduction. Controlled-potential electrolysis confirmed the electro-catalytic proton reduction by the Pd-complex. Electrochemical reactions of CO2 in the presence of 1 exhibited a proton dependence, and metal- and ligand-based electrochemical reaction.
机译:二-2-吡啶酮缩氨基硫脲(dpktsc)和PdCl2(CH3CN)(2)之间的反应,由PdCl2和CH3CN之间的反应原位生成,产生了前所未有的[Pd2Cl3((5)-N-py,N-im,S,N-py,N-am-dpktsc-H)]2CH(3)CN(1)络合物(py=吡啶,im=亚胺,am=酰胺)。通过元素分析和光谱性质证实了1的身份。红外光谱和H-1-NMR光谱证实了(dpktsc-H)()与钯离子的配位。在dmso和dmf中测量的电子吸收光谱和密度泛函理论(DFT)计算揭示了金属-配体电荷转移(MLCT)、d-d和配体内电荷转移(ILCT)的电子跃迁。对从1的dmf溶液中生长的[Pd2Cl3((5)-N-py,N-im,S,N-py,N-am-dpktsc-H)]H2O(2)晶体的X射线结构分析证实了其配方,并显示固态结构包含通过非共价相互作用网络锁定的分子网。对dmf中1的电化学测量揭示了基于金属和配体的氧化还原过程。与未配位dpktsc的电化学分解相反,1中的配位(dpktsc-H)()不会发生电化学分解。1与对甲苯磺酸一水合物(p-TSOH)的电化学滴定显示了电催化质子还原。观察到氢-2演化的过电位()为180mV,与几种质子还原的分子电催化剂相当。控制电位电解证实了钯络合物的电催化质子还原作用。CO2在1存在下的电化学反应表现出质子依赖性,以及基于金属和配体的电化学反应。

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