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水膜驱动的水镁石纳米片生长与堆叠

Water Film-Driven Brucite Nanosheet Growth and Stacking.

作者信息

Luong N Tan, Boily Jean-François

机构信息

Department of Chemistry, Umeå University, Umeå SE 901 87, Sweden.

出版信息

Langmuir. 2023 Aug 8;39(31):11090-11098. doi: 10.1021/acs.langmuir.3c01411. Epub 2023 Jul 24.

Abstract

Thin water films that form by the adhesion and condensation of air moisture on minerals can initiate phase transformation reactions with broad implications in nature and technology. We here show important effects of water film coverages on reaction rates and products during the transformation of periclase (MgO) nanocubes to brucite [Mg(OH)] nanosheets. Using vibrational spectroscopy, we found that the first minutes to hours of Mg(OH) growth followed first-order kinetics, with rates scaling with water loadings. Growth was tightly linked to periclase surface hydration and to the formation of a brucite precursor solid, akin to poorly stacked/dislocated nanosheets. These nanosheets were the predominant forms of Mg(OH) growth in the 2D-like hydration environments of sub-monolayer water films, which formed below ∼50% relative humidity (RH). From molecular simulations, we infer that reactions may have been facilitated near surface defects where sub-monolayer films preferentially accumulated. In contrast, the 3D-like hydration environment of multilayered water films promoted brucite nanoparticle formation by enhancing Mg(OH) nanosheet growth and stacking rates and yields. From the structural similarity of periclase and brucite to other metal (hydr)oxide minerals, this concept of contrasting nanosheet growth should even be applicable for explaining water film-driven mineralogical transformations on other related nanominerals.

摘要

由空气湿度在矿物上的吸附和凝结形成的薄水膜可引发相变反应,这在自然界和技术领域具有广泛影响。我们在此展示了水膜覆盖率对方镁石(MgO)纳米立方体转变为水镁石[Mg(OH)₂]纳米片过程中反应速率和产物的重要影响。通过振动光谱法,我们发现水镁石生长的最初几分钟到几小时遵循一级动力学,速率与水负载量成比例。生长与方镁石表面水化以及类似于堆叠不良/错位纳米片的水镁石前体固体的形成紧密相关。在相对湿度(RH)低于约50%时形成的亚单层水膜的二维状水化环境中,这些纳米片是水镁石生长的主要形式。通过分子模拟,我们推断反应可能在亚单层膜优先积累的表面缺陷附近得到促进。相比之下,多层水膜的三维状水化环境通过提高水镁石纳米片的生长、堆叠速率和产率促进了水镁石纳米颗粒的形成。鉴于方镁石和水镁石与其他金属(氢)氧化物矿物的结构相似性,这种对比纳米片生长的概念甚至应该适用于解释其他相关纳米矿物上的水膜驱动的矿物学转变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3836/10413962/10bf68bf3a97/la3c01411_0002.jpg

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