A transition between bistable ice when coupling electric field and nanoconfinement
Mei, F; Zhou, XY; Kou, JL; Wu, FM; Wang, CL; Lu, HJ
刊名JOURNAL OF CHEMICAL PHYSICS
2015
卷号142期号:13页码:
关键词CONFINED WATER NANOFILMS CARBON NANOTUBES PHASE-TRANSITIONS BILAYER ICE HYDROPHOBIC NANOPORES MOLECULAR-DYNAMICS INTERFACIAL WATER ROOM-TEMPERATURE SURFACE POLARITY LIQUID WATER
英文摘要The effects of an electric field on the phase behavior of water confined inside a nanoscale space were studied using molecular dynamics simulations. It was found that the diffusion coefficient of water reaches its maximum when value of the surfaces' charge is at the threshold, q(c) = 0.5e. This unexpected phenomenon was attributed to the intermediate state between two stable ice states induced by nanoconfinement and the electric field generated by charged surfaces, respectively. Our finding is helpful to understand electromelting and electrofreezing of water under nanoconfinement with the electric field. (C) 2015 AIP Publishing LLC.
收录类别SCI
语种英语
公开日期2015-12-24
内容类型期刊论文
源URL[http://ir.sinap.ac.cn/handle/331007/24389]  
专题上海应用物理研究所_中科院上海应用物理研究所2011-2017年
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Mei, F,Zhou, XY,Kou, JL,et al. A transition between bistable ice when coupling electric field and nanoconfinement[J]. JOURNAL OF CHEMICAL PHYSICS,2015,142(13):—.
APA Mei, F,Zhou, XY,Kou, JL,Wu, FM,Wang, CL,&Lu, HJ.(2015).A transition between bistable ice when coupling electric field and nanoconfinement.JOURNAL OF CHEMICAL PHYSICS,142(13),—.
MLA Mei, F,et al."A transition between bistable ice when coupling electric field and nanoconfinement".JOURNAL OF CHEMICAL PHYSICS 142.13(2015):—.
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