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方解石在酸性聚二乙炔薄膜中的完全取向:有机-无机界面的协同作用。

Total alignment of calcite at acidic polydiacetylene films: cooperativity at the organic-inorganic interface.

出版信息

Science. 1995 Jul 28;269(5223):515-8. doi: 10.1126/science.269.5223.515.

Abstract

Biological matrices can direct the absolute alignment of inorganic crystals such as calcite. Cooperative effects at an organic-inorganic interface resulted in similar co-alignment of calcite at polymeric Langmuir-Schaefer films of 10,12-pentacosadiynoic acid (p-PDA). The films nucleated calcite at the (012) face, and the crystals were co-aligned with respect to the polymer's conjugated backbone. At the same time, the p-PDA alkyl side chains reorganized to optimize the stereochemical fit to the calcite structure, as visualized by changes in the optical spectrum of the polymer. These results indicate the kinds of interactions that may occur in biological systems where large arrays of crystals are co-aligned.

摘要

生物基质可以引导方解石等无机晶体的绝对对齐。有机-无机界面的协同效应导致在 10,12-二十五碳二炔酸(p-PDA)的聚合物 Langmuir-Schaefer 薄膜中,方解石也发生类似的共取向。薄膜在(012)面上诱导方解石成核,晶体相对于聚合物的共轭主链共取向。同时,p-PDA 烷基侧链重新排列以优化与方解石结构的立体化学匹配,聚合物的光谱变化可以直观地看到这一点。这些结果表明在晶体大量共取向的生物体系中可能发生的相互作用类型。

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