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首页> 外文期刊>Crystal Research and Technology: Journal of Experimental and Industrial Crystallography >3D printed models of small and large molecules, structures and morphologies of crystals, as well as their anisotropic physical properties
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3D printed models of small and large molecules, structures and morphologies of crystals, as well as their anisotropic physical properties

机译:大小分子的3D打印模型,晶体的结构和形态及其各向异性物理特性

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Three-dimensional (3D) physical models of atomic structures of crystals, their anisotropic properties and morphologies as well as models of small and large molecules were printed with support from 3D Systems Corporation. Structural information in Crystallographic Information Framework (CIF) files from the Crystallography Open Database and the Protein Data Bank was utilized. Computer programs were either newly developed (Cif2VRML) or enhanced by 3D print file export functions (WinXMorph and WinTensor) in order to design most of these models. Current 3D printing technologies are briefly reviewed. The literature on the impact on students' comprehension and retention of structural information with access to such models is assessed. Our taking of a historical perspective in this paper illustrates that the usage of models has for more than 200 years been an integral component of crystallography.
机译:在3D Systems Corporation的支持下,打印了晶体原子结构的三维(3D)物理模型,其各向异性特性和形态以及大小分子模型。利用了来自晶体学开放数据库和蛋白质数据库的晶体学信息框架(CIF)文件中的结构信息。为了设计大多数模型,计算机程序要么是新开发的(Cif2VRML),要么通过3D打印文件导出功能(WinXMorph和WinTensor)进行了增强。简要回顾了当前的3D打印技术。评估了使用这种模型对学生理解和保留结构信息的影响的文献。在本文中,我们从历史角度出发说明了模型的使用已超过200年,是晶体学不可或缺的组成部分。

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