Molecular motor-driven abrupt anisotropic shape change in a single crystal of a Ni complex

被引:0
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作者
Zi-Shuo Yao
Masaki Mito
Takashi Kamachi
Yoshihito Shiota
Kazunari Yoshizawa
Nobuaki Azuma
Yuji Miyazaki
Kazuyuki Takahashi
Kuirun Zhang
Takumi Nakanishi
Soonchul Kang
Shinji Kanegawa
Osamu Sato
机构
[1] Institute for Materials Chemistry and Engineering,Department of Chemistry
[2] Kyushu University,undefined
[3] Faculty of Engineering,undefined
[4] Kyushu Institute of Technology,undefined
[5] Kitakyushu,undefined
[6] Institute for Materials Chemistry and Engineering,undefined
[7] Kyushu University,undefined
[8] Research Center for Structural Thermodynamics,undefined
[9] Graduate School of Science,undefined
[10] Osaka University,undefined
[11] Toyonaka,undefined
[12] Graduate School of Science,undefined
[13] Kobe University,undefined
[14] Kobe,undefined
来源
Nature Chemistry | 2014年 / 6卷
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摘要
Many molecular machines with controllable molecular-scale motors have been developed. However, transmitting molecular movement to the macroscopic scale remains a formidable challenge. Here we report a single crystal of a Ni complex whose shape changes abruptly and reversibly in response to thermal changes at around room temperature. Variable-temperature single-crystal X-ray diffraction studies show that the crystalline shape change is induced by an unusual 90° rotation of uniaxially aligned oxalate molecules. The oxalate dianions behave as molecular-scale rotors, with their movement propagated through the entire crystalline material via intermolecular hydrogen bonding. Consequently, the subnanometre-scale changes in the oxalate molecules are instantly amplified to a micrometre-scale contraction or expansion of the crystal, accompanied by a thermal hysteresis loop. The shape change in the crystal was clearly detected under an optical microscope. The large directional deformation and prompt response suggest a role for this material in microscale or nanoscale thermal actuators.
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页码:1079 / 1083
页数:4
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