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水合双邻羟基苄氨乙酸铜配位结构的EXAFS研究

Coordination Structure of Bis (N-o-Hydroxybenzylglycine) Copper——(Ⅱ) Hydrate Determined by EXAFS Spectroscopy

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【作者】 吕冈沈孝良马礼敦张华麟章惠侬周梅生

【Author】 Lu Gang;Shen Xiao-Liang;Ma Li-Dun;Zhang Hua-Lin;Zhang Hui-Nong;zhou Mei-Sheng Center for Analysis and Measurement, Fudan University, Shanghai Department of Chemistry, Fudan University, Shanghai

【机构】 复旦大学分析测试中心复旦大学化学系复旦大学化学系 上海上海

【摘要】 用参数化经验公式,从已知晶体结构的无水双邻羟基苄胺铜(Ⅱ)[Cu(o-OC6H4CH2NH22, 1]的EXAFS数据中分离出振幅和相移,拟合另一已知晶体结构的水合双邻羟基苄胺铜(Ⅱ){[Cu(o-OC6H4CH2NH22·H2O]·1/2H2O,2}的结构参数并进行检验后,代入未知结构的水合双邻羟基苄氨乙酸铜(Ⅱ)[Cu(o-HOC6H4CH2NHCH2CO22·H2O,3]中进行曲线拟合,得到配位原子、键长和配位数等结构信息。结合红外光谱,推断标题化合物中,Cu(Ⅱ)与两个苄基氮和两个羧基氧形成一个平面四边形的配位结构。 Cu—O羧基健长2.00A,Cu-N键长1.90A,另有一个较远的配住水分子,Cu—O距离2.95A。配体上的酚基氧没有与Cu(Ⅱ)配合。因此,邻羟基苄氨乙酸(HBG)与Cu(Ⅱ)配位时表现为二啮形式。

【Abstract】 EXAFS measurements were performed on the K-edge for bis (o-hydroxybenzylamine)copper(Ⅱ) (1), bis(o-hydroxybenzylamine) copper (Ⅱ) hydrate (2) and bis(N-o-hydroxybenzylglycine) copper (Ⅱ) hydrate (3) on a X-ray spectrometer in transmissionmode. The crystal structures of the first two compounds are known and used as the modeland reference compound respectively. Parameterized amplitude and phase shift werecurve fitted from the Fourier filtering data of compound 1, and transferred to deducethe structural parameters of compound 2 for certification. By curve fitting the EXAFSof compound 3 with the certified amplitude and phase shift function, the coordinationstructural information of bond lengths, coordination numbers and the type ofcoordination atoms were obtained. Combined with IR spectroscopy and ionic conductivitystudies, the conclusion can be inferred that Cu (Ⅱ) in the title compound is linked withtwo benzyl nitrogen atoms, two carbexylate oxygen atoms, and has a coordination ofsquare-planar, wheroin the Cu--O (carboxylate oxygen) bond length is of 2.00A, Cu--Nof 1.99 A. There is another oxygen atom located 2.95A away from the central copper.The phenol oxygen atom in 3 is not coordinated with Cu(Ⅱ), therefore, here HBGbehaves as a bi dentate ligand.

【基金】 国家自然科学基金
  • 【文献出处】 化学学报 ,Acta Chimica Sinica , 编辑部邮箱 ,1989年01期
  • 【被引频次】4
  • 【下载频次】47
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