在微酸性介质中,鳞片闪石(γ-FeOOH)与 Fe(II)(aq)的转化:中间途径和仿生行为

IF 5.8 2区 环境科学与生态学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Mario Alberto Gomez, Yiwen Chen, Miao Song, Dongsheng Li, Alan Scott Lea, Shuhua Yao, Yihang Duan, Yongfeng Jia, Yige Cai and Tangfu Xiao
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引用次数: 0

摘要

鳞片闪石(Lepidocrocite,LP)通常存在于自然或人为环境以及氧化合金钢废物储存容器中。尽管它非常重要,但由于几十年来的研究分散,在 Fe(II)(aq)催化下形成的最终产物及其矿物转化途径,包括中间步骤和基本机制仍有待澄清。在这项工作中,我们通过大尺度(X 射线衍射/XRD、拉曼和衰减全反射傅立叶变换红外/ATR-FTIR)和微/纳米尺度(半原位透射电子显微镜/TEM)分析,研究了 LP 与 10 mM 和 0.2 mM Fe(II)(aq)在其天然溶液 pH 值下的催化转化。总体而言,我们观察到主要的最终产物是网纹石(GT)和 LP。然而,在 LP 上发生了一系列由溶解型反应和 "诱导期"(缺乏溶解)引发的两个不同的主要中间事件。令人惊奇的是,在矿物转化过程中,有两个中间步骤通过某种导向颗粒附着,呈现出新型的非经典结晶机制。此外,其中一个中间步骤在外观上类似于细菌颗粒附着过程中观察到的生物模拟。不过,它使用了无机纳米线天线,这种天线具有类似于通过电子透明薄膜(类似于生物薄膜基质)观察到的细菌纤毛和/或鞭毛的感应功能。最后,这项工作让我们了解了在自然和人为环境中常见的 GT 晶体形态的演变过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The transformation of lepidocrocite (γ-FeOOH) with Fe(ii)(aq) in slightly acidic media: intermediate pathways and biomimetic behavior†

The transformation of lepidocrocite (γ-FeOOH) with Fe(ii)(aq) in slightly acidic media: intermediate pathways and biomimetic behavior†

The transformation of lepidocrocite (γ-FeOOH) with Fe(ii)(aq) in slightly acidic media: intermediate pathways and biomimetic behavior†

Lepidocrocite (LP) is commonly found in natural or anthropogenic environments and oxidized alloy steel waste storage containers. Despite its importance, the end products formed and its mineral transformation pathways, including intermediate steps and underlying mechanisms under Fe(II)(aq) catalysis still need to be clarified due to decades of dispersed research. In this work, we investigated LP's catalytic transformation with 10 mM and 0.2 mM Fe(II)(aq) at their natural solution pH's via bulk (X-ray Diffraction/XRD, Raman and Attenuated Total Reflectance Fourier Transform Infrared/ATR-FTIR) and micro/nano-scale (semi in situ Transmission Electron Microscopy/TEM) analysis. In general, we observed that goethite (GT) and LP were the main end products. However, a series of two major distinct intermediate events that were initiated by a dissolution type of reaction along with an “induction period” (lack of dissolution) on LP occurred. Fascinatingly, two of the intermediate steps along its mineral transformation presented novel types of non-classical mechanisms of crystallization via some type of guided oriented particle attachment. Furthermore, one of these intermediate steps is biomimetic in appearance, similar to what is observed during bacterial particle attachment. However, it uses inorganic nano-wire antennas that have a sensory-like function as observed with bacterial fimbriae and/or flagellum through an electron transparent film (similar to a bio-film matrix). Finally, this work leads us to comprehend the evolution of some well documented crystal morphologies for GT commonly observed in natural and anthropogenic settings.

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来源期刊
Environmental Science: Nano
Environmental Science: Nano CHEMISTRY, MULTIDISCIPLINARY-ENVIRONMENTAL SCIENCES
CiteScore
12.20
自引率
5.50%
发文量
290
审稿时长
2.1 months
期刊介绍: Environmental Science: Nano serves as a comprehensive and high-impact peer-reviewed source of information on the design and demonstration of engineered nanomaterials for environment-based applications. It also covers the interactions between engineered, natural, and incidental nanomaterials with biological and environmental systems. This scope includes, but is not limited to, the following topic areas: Novel nanomaterial-based applications for water, air, soil, food, and energy sustainability Nanomaterial interactions with biological systems and nanotoxicology Environmental fate, reactivity, and transformations of nanoscale materials Nanoscale processes in the environment Sustainable nanotechnology including rational nanomaterial design, life cycle assessment, risk/benefit analysis
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