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在一阶电子相变温度以下诱导水分子离解的极化。

Polarization induced water molecule dissociation below the first-order electronic-phase transition temperature.

机构信息

Condensed Matter Group, Division of Interdisciplinary Science, D403 Puteri Court, No. 1, Jalan 28, Taman Putra, 68000 Ampang, Selangor DE, Malaysia.

出版信息

Phys Chem Chem Phys. 2011 Sep 7;13(33):15175-81. doi: 10.1039/c1cp20138g. Epub 2011 Jul 21.

Abstract

Hydrogen produced from the photocatalytic splitting of water is one of the reliable alternatives to replace the polluting fossil and the radioactive nuclear fuels. Here, we provide unequivocal evidence for the existence of blue- and red-shifting O-H covalent bonds within a single water molecule adsorbed on the MgO surface as a result of asymmetric displacement polarizabilities. The adsorbed H-O-H on MgO gives rise to one weaker H-O bond, while the other O-H covalent bond from the same adsorbed water molecule compensates this effect with a stronger bond. The weaker bond (nearest to the surface), the interlayer tunneling electrons and the silver substrate are shown to be the causes for the smallest dissociative activation energy on the MgO monolayer. The origin that is responsible to initiate the splitting mechanism is proven to be due to the changes in the polarizability of an adsorbed water molecule, which are further supported by the temperature-dependent static dielectric constant measurements for water below the first-order electronic-phase transition temperature.

摘要

由光催化水分解产生的氢气是替代污染的化石燃料和放射性核燃料的可靠替代品之一。在这里,我们提供了明确的证据,证明在单个水分子吸附在氧化镁表面上时,由于不对称位移极化率的存在,存在蓝移和红移的 O-H 共价键。吸附在 MgO 上的 H-O-H 导致一个较弱的 H-O 键,而来自同一吸附水分子的另一个 O-H 共价键通过更强的键来补偿这种效应。较弱的键(最靠近表面)、层间隧穿电子和银衬底被证明是 MgO 单层上具有最小离解活化能的原因。证明引发分裂机制的起源是由于吸附水分子的极化率的变化,这进一步得到了低于一阶电子相变温度下水的温度相关静态介电常数测量的支持。

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