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The behaviour of OH* in aqueous environments, nucleation of gas hydrates, and ordering processes in MOFs: insights from molecular simulations

The behaviour of OH* in aqueous environments, nucleation of gas hydrates, and ordering processes in MOFs: insights from molecular simulations
OH* 在水环境中的行为、气体水合物的成核以及 MOF 中的有序过程:来自分子模拟的见解
批准号:
RGPIN-2016-03845
负责人:
Kusalik, Peter
金额:
$3.35万
依托单位:
依托单位国家:
加拿大
项目类别:
Discovery Grants Program - Individual
财政年份:
2017
资助国家:
加拿大
项目状态:
已结题
起止时间:
2017-01-01 至 2018-12-31

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中文摘要
翻译
分子模拟已经成为非常强大的工具,极大地影响了我们在分子水平上对物质的理解。使用这种方法,我们可以研究相互作用和进化的分子集合,从而提供新的科学见解。我研究的总体目标是探索液体和固体系统的微观行为,以进一步了解它们的各种化学和物理性质,它们的转化和反应。该提案侧重于两个关键领域,一个旨在探索重要类别材料的结晶和有序过程,另一个集中于研究关键和高活性化学物质羟基自由基在各种水性环境中的行为。这项工作将提高我们对冰、天然气水合物和金属有机骨架材料如何以及何时形成的基本理解。它还可能最终导致新的方法来抑制管道中的气体水合物堵塞或控制与羟基自由基有关的疾病,如癌症和衰老。这项研究的结果有可能产生广泛的影响,例如,改善医疗保健结果,更高效和有效的废水处理,更好的气候模型提供更好的天气预报,以及获得目前储存在天然气水合物储量中的巨大能源财富。
英文摘要
Molecular simulations have become very powerful tools that are dramatically impacting our understanding of matter at the molecular level. Using such approaches, we can examine collections of molecules interacting and evolving thereby providing new scientific insights. The overall aim of my research is to probe the microscopic behaviour of liquid and solid systems in order to further our understanding of their various chemical and physical properties, their transformations and reactions within them. This proposal focuses on two key areas, one aimed at exploring crystallization and ordering processes for important classes of materials, and the other centered on investigating the behaviour of a key and highly reactive chemical species, the hydroxyl radical, in various aqueous environments. This work will improve our fundamental understanding of, for example, how and when ice, gas hydrates and metal-organic framework materials may form. It may also eventually lead to new ways to inhibit gas hydrate plugs in pipelines or to control diseases that have links to the hydroxyl radical, such as cancer and aging. The results of this research have potential for broad impact by leading to, for example, improved health-care outcomes, more efficient and effective wastewater treatments, better climate models providing improved weather forecasts, and access to the enormous energy wealth currently stored in vast reserves of natural gas hydrates.
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The behaviour of OH* in aqueous environments, nucleation of gas hydrates, and ordering processes in MOFs: insights from molecular simulations
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