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用于发光器件的碘化铜簇的机械化学制备

Mechanochemical preparation of copper iodide clusters of interest for luminescent devices.

作者信息

Maini Lucia, Mazzeo Paolo P, Farinella Francesco, Fattori Valeria, Braga Dario

机构信息

Dipartimento di Chimica "G. Ciamician", Università di Bologna, Via F. Selmi 2, Bologna, Italy.

出版信息

Faraday Discuss. 2014;170:93-107. doi: 10.1039/c3fd00164d.

Abstract

The copper iodide complexes are known for their large variety of coordination geometries. Such diversity, while making it difficult to predict the final structure, permits the preparation of a great number of copper iodide complexes based on the same ligand. The target of the research was that of thoroughly exploring the chemistry of CuI and the ligand diphenyl-2-pyridyl phosphine (PN) by varying the stoichiometric ratio and/or the aggregation state. Six different compounds have been identified: [Cu4I4(PN)2], [Cu4I4(PN)2·(CH2Cl2)0.5], [CuI(PN)0.5]∞, [CuI(PN)3] whose structures have been determined during this study, CuI(PN)2 which was characterized by powder diffraction and [Cu2I2(PN)3] which has been already reported. The preparation routes are also different: synthesis in solution yielded [Cu4I4(PN)2·(CH2Cl2)0.5] and [CuI(PN)3] while [CuI(PN)0.5]∞ and CuI(PN)2 were obtained only via solid state reactions. These two latter examples confirmed that mechanochemistry is a valid route to explore the landscape of the possible structures of CuI derivatives. Crystallization by traditional solution procedures failed to give the desired crystal, so structure determination of the new compounds was tackled in two ways: by attempting crystal growth via solvothermal synthesis and by resolving the structure from X-ray powder diffraction data with "direct space" methods. What is more the photophysical properties of the complexes that could be obtained as sufficiently pure powders have also been investigated and are reported herein.

摘要

碘化铜配合物以其多种多样的配位几何结构而闻名。这种多样性虽然使得预测最终结构变得困难,但却能够基于相同的配体制备大量的碘化铜配合物。该研究的目标是通过改变化学计量比和/或聚集状态,全面探索碘化亚铜(CuI)与二苯基 - 2 - 吡啶基膦(PN)配体的化学性质。已鉴定出六种不同的化合物:[Cu4I4(PN)2]、[Cu4I4(PN)2·(CH2Cl2)0.5]、[CuI(PN)0.5]∞、[CuI(PN)3](本研究已确定其结构)、通过粉末衍射表征的CuI(PN)2以及已报道过的[Cu2I2(PN)3]。其制备路线也各不相同:在溶液中合成得到[Cu4I4(PN)2·(CH2Cl2)0.5]和[CuI(PN)3],而[CuI(PN)0.5]∞和CuI(PN)2仅通过固态反应获得。后两个例子证实了机械化学是探索CuI衍生物可能结构领域的有效途径。传统溶液法结晶未能得到所需晶体,因此新化合物的结构测定通过两种方式进行:尝试通过溶剂热合成进行晶体生长以及用“直接空间”方法从X射线粉末衍射数据解析结构。此外,还对能够以足够纯的粉末形式获得的配合物的光物理性质进行了研究,并在此处进行了报道。

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