Journal article

Photo‐ and Electronically Switchable Spin‐Crossover Iron(II) Metal–Organic Frameworks Based on a Tetrathiafulvalene Ligand

Hai‐Ying Wang, Jing‐Yuan Ge, Carol Hua, Cheng‐Qi Jiao, Yue Wu, Chanel F Leong, Deanna M D'Alessandro, Tao Liu, Jing‐Lin Zuo

Angewandte Chemie | Wiley | Published : 2017

Abstract

AbstractA major challenge is the development of multifunctional metal–organic frameworks (MOFs), wherein magnetic and electronic functionality can be controlled simultaneously. Herein, we rationally construct two 3D MOFs by introducing the redox active ligand tetra(4‐pyridyl)tetrathiafulvalene (TTF(py)4) and spin‐crossover FeII centers. The materials exhibit redox activity, in addition to thermally and photo‐induced spin crossover (SCO). A crystal‐to‐crystal transformation induced by I2 doping has also been observed and the resulting intercalated structure determined. The conductivity could be significantly enhanced (up to 3 orders of magnitude) by modulating the electronic state of the fram..

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University of Melbourne Researchers

Grants

Awarded by National Natural Science Foundation of China


Awarded by Natural Science Foundation of Jiangsu Province


Awarded by Australian Research Council