Suppr超能文献

共享氢键:沸石中的水合铝。

Shared hydrogen bonds: water in aluminated faujasite.

机构信息

Atomic Mineral Directorate For Exploration & Research, Nagarbhavi, Bangalore-560072, India.

Atomic Mineral Directorate For Exploration & Research, R. K. Puram, New Delhi-110066, India.

出版信息

Phys Chem Chem Phys. 2020 Jan 22;22(3):1632-1639. doi: 10.1039/c9cp04972j.

Abstract

Water confined in faujasite, a zeolite, with aluminium content, exhibits properties different from those of bulk water as well as water confined in siliceous faujasite. The RDF between oxygen of water (OW) and oxygen of aluminium (OAl) shows a prominent first peak near to 2.9 Å similar to any oxygen-oxygen RDF seen in bulk water and unlike water confined in siliceous faujasite. Further, HW-OAl shows a peak near 1.9 Å suggesting hydrogen bonding between hydrogen of water and OAl. The water satisfies the hydrogen bond criteria with both O1Al and O2Al indicating that it is participating in a shared hydrogen bond. The hydrogen bond exchange between such a water forming a shared hydrogen bond to OAl and another water molecule H2Ob is investigated through the changes in the distances and appropriate angles. The O-Al-O angle of the zeolite increases by about 7 degrees on the formation of the shared hydrogen bond. The jump dynamics of the shared hydrogen bond when the two bonds break simultaneously has been obtained and this is reported. This jump reorientation dynamics is different compared to normal hydrogen bonding reported by Laage and Hynes: it has a short lifetime, around 50-100 fs computed from SHB(t). The intermittent and continuous hydrogen bond correlation functions are also reported.

摘要

水被限制在含有铝的方沸石沸石中,表现出与体相水以及被限制在硅质方沸石中的水不同的性质。水分子(OW)的氧和铝原子(OAl)的径向分布函数(RDF)在 2.9Å 附近显示出明显的第一峰,类似于在体相水中看到的任何氧-氧 RDF,与被限制在硅质方沸石中的水不同。此外,HW-OAl 在 1.9Å 附近显示出一个峰,表明水分子的氢与 OAl 之间存在氢键。水与 O1Al 和 O2Al 都满足氢键的标准,这表明它参与了共享氢键。通过改变距离和适当的角度,研究了形成共享氢键的水与另一个水分子 H2Ob 之间的氢键交换。沸石中 O-Al-O 角在形成共享氢键时增加了约 7 度。同时断裂两个键时共享氢键的跳跃动力学已经被获得,并在此报告。与 Laage 和 Hynes 报道的正常氢键相比,这种跳跃重定向动力学有所不同:它的寿命较短,从 SHB(t) 计算约为 50-100fs。还报告了间歇和连续的氢键相关函数。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验