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纳米受限水中电子的异常基态。

Anomalous ground state of the electrons in nanoconfined water.

机构信息

Physics Department, University of Houston, Houston, Texas 77204, USA.

出版信息

Phys Rev Lett. 2013 Jul 19;111(3):036803. doi: 10.1103/PhysRevLett.111.036803.

Abstract

Water confined on the scale of 20 Å, is known to have different transport and thermodynamic properties from that of bulk water, and the proton momentum distribution has recently been shown to have qualitatively different properties from that exhibited in bulk water. The electronic ground state of nanoconfined water must be responsible for these anomalies but has so far not been investigated. We show here for the first time, using x-ray Compton scattering and a computational model, that the ground state configuration of the valence electrons in a particular nanoconfined water system, Nafion, is so different from that of bulk water that the weakly electrostatically interacting molecule model of water is clearly inapplicable. We argue that this is a generic property of nanoconfinement. The present results demonstrate that the electrons, and hence the protons as well, of nanoconfined water are in a distinctly different quantum state from that of bulk water. Biological cell function must make use of the properties of this state and cannot be expected to be described correctly by empirical models based on the weakly interacting molecules model.

摘要

在 20Å 尺度下受限的水,其输运和热力学性质与体相水不同,最近质子动量分布也被证明具有与体相水不同的性质。纳米受限水中的电子基态必然对这些异常现象负责,但迄今为止尚未得到研究。我们首次使用 X 射线康普顿散射和计算模型表明,在特定的纳米受限水体系 Nafion 中,价电子的基态构型与体相水有很大的不同,因此水的弱静电相互作用分子模型显然不适用。我们认为这是纳米受限的普遍性质。目前的结果表明,纳米受限水中的电子,因此包括质子,都处于与体相水明显不同的量子状态。生物细胞功能必须利用这种状态的性质,不能期望基于弱相互作用分子模型的经验模型能够正确描述。

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