Gong Zhong-Liang, Zhong Yu-Wu, Yao Jiannian
Beijing National Laboratory for Molecular Sciences, CAS Key Laboratory of Photochemistry, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100190 (China).
Chemistry. 2015 Jan 19;21(4):1554-66. doi: 10.1002/chem.201405332. Epub 2014 Nov 24.
Bis-triarylamine 2 and cyclometalated diruthenium 6(PF6)2 with a linear trans,trans-urea bridge have been prepared, together with the bis-triarylamine 3 and cyclometalated diruthenium 8(PF6)2 with a folded cis,cis-N,N-dimethylurea bridge. The linear or folded conformations of these molecules are supported by single-crystal X-ray structures of 2, 3, and other related compounds. These compounds display two consecutive anodic redox waves (N(·+/0) or Ru(III/II) processes) with a potential separation of 110-170 mV. This suggests that an efficient electronic coupling is present between two redox termini through the cross-conjugated urea bridge. The degree of electronic coupling has been investigated by using spectroelectrochemical measurements. Distinct intervalence charge-transfer (IVCT) transitions have been observed for mixed-valent (MV) compounds with a linear conformation. The IVCT transitions can also be identified for the folded MV compounds, albeit with a much weaker intensity. DFT results support that the electronic communication occurs by a through-bond and through-space pathway for the linear and folded compounds, respectively. The IVCT transitions of the MV compounds have been reproduced by TDDFT calculations. For the purpose of comparison, a bistriarylamine and a diruthenium complex with an imidazolidin-2-one bridge and a urea-containing mono-triarylamine and monoruthenium complex have been synthesized and studied.
已制备出具有线性反式、反式脲桥的双三芳基胺2和环金属化二钌6(PF₆)₂,以及具有折叠式顺式、顺式-N,N-二甲基脲桥的双三芳基胺3和环金属化二钌8(PF₆)₂。这些分子的线性或折叠构象得到了2、3及其他相关化合物的单晶X射线结构的支持。这些化合物显示出两个连续的阳极氧化还原波(N(·⁺/⁰)或Ru(III/II)过程),电位差为110 - 170 mV。这表明通过交叉共轭脲桥,两个氧化还原末端之间存在有效的电子耦合。通过光谱电化学测量研究了电子耦合程度。对于具有线性构象的混合价(MV)化合物,观察到了明显的价间电荷转移(IVCT)跃迁。对于折叠的MV化合物也可以识别出IVCT跃迁,尽管强度要弱得多。密度泛函理论(DFT)结果支持,对于线性和折叠化合物,电子通信分别通过键间和空间途径发生。MV化合物的IVCT跃迁已通过含时密度泛函理论(TDDFT)计算得到重现。为了进行比较,合成并研究了具有咪唑啉-2-酮桥的双三芳基胺和二钌配合物以及含脲的单三芳基胺和单钌配合物。