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Design, Synthesis, Crystal Structure and Photophysical Properties of New Oxadiazole Extended Viologen Fluorophore

机译:新氧基唑延长Viologen荧光团的设计,合成,晶体结构和光物理性质

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Viologens (N,N' -dimethyl-4,4-bipyridinium) are advanced functional materials, found important applications in electrochromic devices, molecular machines, organic batteries, and carbohydrate oxidation catalysts in alkaline fuel. In this article, we investigated the design, synthesis and photophysical properties of N,N' -dimethyl-2,5-Bis(pyridinium)oxadiazole 4 and its precursor 2,5- Bis(pyridine)oxadiazole 2 . The crystal structure and photophysical properties of viologen 4 and precursor 2 have been determined. The viologen molecule 4 crystallized in monoclinic form, space group P 2_(1)/n with four molecules in unit cell. Precursor molecule 2 also crystalized in monoclinic form, space group C 2/c with four molecules in unit cell. From X-rd data, we found three cations in the molecular structure of viologen molecule 4 , which is unusual in viologens. In the three-dimensional molecular packing diagram of molecule 4 , the three cations and iodate anions are stabilized by C···C, C···I, N···I, N···H, H···I, N—H···I and C—H···I. The dihedral angle between planes having oxadiazole and two benzene rings are 5° and 8°, suggesting the molecule 4 is a slightly strained one. The molecular structure of precursor molecule 2 stabilized by C···C and N···H short contacts between the molecules. The molecule 4 displayed strong absorbance at 315 nm and emissions between 390 - 410 nm.
机译:Viologens( N,N'-二甲基-4,4-双吡啶)是先进的功能材料,在碱性燃料中发现了电致变色器件,分子机,有机电池和碳水化合物氧化催化剂中的重要应用。在本文中,我们研究了 N,N'-Dimethyl-2,5-双(吡啶鎓)恶二唑B> 4的设计,合成和光物理性质及其前体2,5-双(吡啶)恶二唑.< b> 2。已经确定了VIOLOLEN 4和前体 2的晶体结构和光物理性质。在单斜形式中结晶的viologen分子 4,空间组 p 2_(1)/ n,单位细胞中有四个分子。前体分子 2也以单斜晶形式结晶,空间组 C 2 / C 2,单位细胞中有四个分子。根据X-RD数据,我们在Viologen分子 4的分子结构中发现了三个阳离子,其在Viologens中是不寻常的。在分子 4的三维分子包装图中,通过c···C,C·I,N····,N,H,H,H·H· ··i,n-h····我和C-H····我。具有氧代唑和两个苯环的平面之间的二偏角角是5&amp;#176;和8&amp;#176;,建议分子 4是略微应变的。通过C ... C和N稳定的前体分子 2的分子结构,分子之间的短触点。分子 4在315nm处显示出强烈的吸光度,390-410nm之间的排放。

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