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从不对称性角度理解二氧化硅。

Understanding Silica from the Viewpoint of Asymmetry.

作者信息

Jin Ren-Hua

机构信息

Department of Material and Life Chemistry, Kanagawa University, 3-2-7 Rokkakubashi, Yokohama, 221-8686, Japan.

出版信息

Chemistry. 2019 May 2;25(25):6270-6283. doi: 10.1002/chem.201805053. Epub 2019 Feb 21.

DOI:10.1002/chem.201805053
PMID:30601576
Abstract

Silica is abundant in the Earth's crust, and silicate materials are used on the global scale, from industrial products for architecture, vehicles, electronics, and optics to consumption as foods, medicines, supplements, and cosmetics. Silica has become increasingly important in current science and technology, as seen in the components of advanced materials. The characteristic formula of silica is very simply often expressed as SiO . However, it is difficult to draw silica precisely owing to its intricate chemical structures. We need to make a greater effort in understanding silica, even though silica chemistry has existed for over 200 years. Similar to the homochirality observed in natural amino acids, natural silica of quartz is chiral, and in some sense, the origin of life with chirality might be partly related to quartz-like silica chirality. This review focuses on the asymmetry of silica from the view of the formation of irregular tetrahedron structures of SiO . Silica is composed of several repeated tetrahedron units of SiO , leading to the formation of inorganic polymers with divergently expanded 3D structures. In this large polymeric skeleton, not every unit of SiO can maintain an ideal tetrahedron, and thus, it becomes twisted. The twisting results in an asymmetric point on the Si atom, leading silica to become racemic in the stereochemical sense. Therefore, enantioselective preparation of silica should endow silica with chirality through the silica skeleton. Some recent achievements exhibit that silica is an effective chiral material and has great potential for transferring chirality from silica to other matter.

摘要

硅在地壳中含量丰富,硅酸盐材料在全球范围内都有应用,从建筑、车辆、电子和光学领域的工业产品到食品、药品、补充剂和化妆品等消费品。正如在先进材料的组件中所看到的那样,硅在当前的科学技术中变得越来越重要。硅的特征化学式通常非常简单地表示为SiO 。然而,由于其复杂的化学结构,精确绘制硅很困难。尽管硅化学已经存在了200多年,但我们仍需要付出更大努力来理解硅。与天然氨基酸中观察到的同手性类似,天然石英硅是手性的,从某种意义上说,具有手性的生命起源可能部分与类石英硅的手性有关。本综述从SiO 不规则四面体结构形成的角度关注硅的不对称性。硅由几个重复的SiO 四面体单元组成,导致形成具有发散扩展三维结构的无机聚合物。在这个大的聚合物骨架中,并非每个SiO 单元都能保持理想的四面体,因此它会发生扭曲。这种扭曲导致硅原子上出现一个不对称点,从立体化学意义上讲,使硅成为外消旋体。因此,硅的对映选择性制备应通过硅骨架赋予硅手性。最近的一些成果表明,硅是一种有效的手性材料,并且在将手性从硅转移到其他物质方面具有巨大潜力。

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Understanding Silica from the Viewpoint of Asymmetry.从不对称性角度理解二氧化硅。
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