Unterlass Miriam M
Institute of Materials Chemistry, Technische Universität Wien, 1060 Vienna, Austria.
Biomimetics (Basel). 2017 May 31;2(2):8. doi: 10.3390/biomimetics2020008.
'Extreme biomimetics' and 'geomimetics' are relatively recent fields of materials chemistry. Both take inspiration from natural materials for generating novel synthetic materials or enhanced properties in known materials. In geomimetics, the source of inspiration is geological systems, while extreme biomimetics is motivated by organisms operating in-from an anthropocentric point of view-extreme conditions. This review article focuses on geomimetic and extreme biomimetic hydrothermal synthesis. Since hydrothermal preparative chemistry typically uses nothing but water and the required precursors, the field belongs to the research area of 'green materials chemistry'. Geomimetics, on the one hand, takes inspiration from natural materials formation. Extreme Biomimetics, on the other hand, is inspired by materials found in extremophile organisms, instead of aiming to implement their actual biosynthesis. In this contribution, both extreme biomimetics and geomimetics are first defined, and further critically discussed on the basis of recent, selected examples. Moreover, the necessity for the two closely related fields as well their prospects are commented on.
“极端仿生学”和“地质仿生学”是材料化学领域中相对较新的研究方向。二者均从天然材料中获取灵感,以制备新型合成材料或提升已知材料的性能。在地质仿生学中,灵感来源于地质系统,而极端仿生学则是以在(从人类中心主义视角来看)极端条件下生存的生物体为灵感来源。这篇综述文章聚焦于地质仿生和极端仿生水热合成。由于水热制备化学通常仅使用水和所需的前驱体,该领域属于“绿色材料化学”的研究范畴。一方面,地质仿生学从天然材料的形成过程中汲取灵感。另一方面,极端仿生学的灵感源自极端微生物体内发现的材料,而非致力于重现其实际的生物合成过程。在本文中,首先对极端仿生学和地质仿生学进行了定义,并基于近期精选的实例对其进行了深入探讨。此外,还对这两个紧密相关领域的必要性及其前景进行了评论。