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膦酸酯-穴状配体/甲基吡啶鎓配合物的电化学控制形成/解离

Electrochemically controlled formation/dissociation of phosphonate-cavitand/methylpyridinium complexes.

作者信息

Gadenne Benoît, Semeraro Monica, Yebeutchou Roger M, Tancini Francesca, Pirondini Laura, Dalcanale Enrico, Credi Alberto

机构信息

Dipartimento di Chimica "G. Ciamician", Università di Bologna, Via Selmi 2, 40126 Bologna (Italy), Fax: (+39) 051-209-9456.

Dipartimento di Chimica Organica e Industriale and INSTM, UdR Parma, Università di Parma, Viale Usberti 17 A, 43100 Parma (Italy), Fax: (+39) 0521-905472.

出版信息

Chemistry. 2008;14(29):8964-8971. doi: 10.1002/chem.200800966.

Abstract

The phosphorus-bridged cavitand 1 self-assembles very efficiently in CH2Cl2 with either the monopyridinium guest 2+ or the bispyridinium guest 3(2+). In the first case a 1:1 complex is obtained, whereas in the second case both 1:1 and 2:1 host-guest complexes are observed. The association between 1 and either one of the guests causes the quenching of the cavitand fluorescence; in the case of the adduct between 1 and 3(2+), the fluorescence of the latter is also quenched. Cavitand complexation is found to affect the reduction potential values of the electroactive guests. Voltammetric and spectroelectrochemical measurements show that upon one-electron reduction both guests are released from the cavity of 1. Owing to the chemical reversibility of such redox processes, the supramolecular complexes can be re-assembled upon removal of the extra electron from the guest. Systems of this kind are promising for the construction of switchable nanoscale devices and self-assembling supramolecular materials, the structure and properties of which can be reversibly controlled by electrochemical stimuli.

摘要

磷桥联穴状配体1在二氯甲烷中能与单吡啶鎓客体2+或双吡啶鎓客体3(2+)非常高效地自组装。在第一种情况下得到1:1配合物,而在第二种情况下观察到1:1和2:1主客体配合物。1与任一客体之间的缔合会导致穴状配体荧光猝灭;在1与3(2+)的加合物的情况下,后者的荧光也会猝灭。发现穴状配体络合会影响电活性客体的还原电位值。伏安法和光谱电化学测量表明,单电子还原时两个客体都会从1的空腔中释放出来。由于此类氧化还原过程的化学可逆性,去除客体上的额外电子后超分子配合物可以重新组装。这种体系有望用于构建可切换的纳米级器件和自组装超分子材料,其结构和性质可通过电化学刺激进行可逆控制。

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