Reversible Pore Size Control of Elastic Microporous Material by Mechanical Force

Reversible Pore Size Control of Elastic Microporous Material by Mechanical Force
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机械力可逆控制弹性微孔材料的孔径

DOI:
10.1002/chem.201390153
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发表时间:
2013
期刊:
Chemistry - A European Journal
影响因子:
--
通讯作者:
Takashi Kyotani
Takashi Kyotani
中科院分区:
--
文献类型:
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作者:
Masashi Ito;Hirotomo Nishihara;Kentaro Yamamoto;Hiroyuki Itoi;Hideki Tanaka;Akira Maki;Minoru T. Miyahara; Seung Jae Yang;Chong Rae Park;Takashi Kyotani

文献摘要

相似文献

沸石模板碳是非常灵活的,表现为一种弹性微孔材料,不同于其他微孔材料,如活性炭,沸石和金属有机框架。其均匀的微孔(1.2 nm)可以通过加载机械力可逆地收缩/恢复,并且这种孔径变化引起气体物理吸附量的显著增加。有关更多详细信息,请参阅H. Nishihara等人,第13009页及以下。
Zeolite-templated carbon is extraordinarily flexible and behaves as a kind of elastic microporous material, unlike other microporous materials, such as activated carbons, zeolites, and metal–organic frameworks. Its uniform micropores (1.2 nm) can be contracted/recovered reversibly just by loading mechanical force, and such pore-size change induces noticeable increase in gas-physisorption amount. For more details see the Full Paper by H. Nishihara et al. on page 13009 ff.