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Directed nucleation of calcite at a crystal-imprinted polymer surface

机译:方解石在晶体印迹聚合物表面的直接成核

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The finely tuned properties of natural biominerals and composites reflect the remarkable level of control that is exercised over the size, shape and organization of the constituent crystals. Achieving this degree of control over synthetic materials might therefore lead to superior material properties. Organic small molecules, polymers or surfactant mesophases have been used to guide the growth and morphology of inorganic materials via steric constraints or structure-directing interactions. Here we show that synthetic polymers can be imprinted with motifs of crystal surfaces so as to template the growth of specific crystal phases. Our polymers, imprinted with calcite, are able to induce the nucleation of calcite under conditions favouring the growth of aragonite (another polymorph of calcium carbonate). The synthesis of the polymers, based on the principles of molecular imprinting, involves the adsorption of functional monomers to a calcite surface, followed by co-polymerization with a cross-linker to create an imprint of the crystal surface. Subsequent removal of the calcite template yields a polymer matrix with a surface functionality mirroring the crystal face and able to promote the nucleation of calcite. We expect that the molecular-imprinting approach to directed nucleation can be applied to crystals other than calcite.
机译:天然生物矿物和复合材料的微调特性反映了对组成晶体的大小,形状和组织所施加的卓越控制水平。因此,达到对合成材料的这种控制程度可能会导致优异的材料性能。有机小分子,聚合物或表面活性剂中间相已用于通过空间限制或结构导向相互作用来指导无机材料的生长和形态。在这里,我们表明合成聚合物可以印有晶体表面的图案,以便模板化特定晶体相的生长。我们的聚合物上印有方解石,能够在有利于文石(碳酸钙的另一种多晶型物)生长的条件下诱导方解石成核。基于分子印迹的原理,聚合物的合成涉及将功能单体吸附到方解石表面,然后与交联剂共聚以形成晶体表面的印迹。随后除去方解石模板,得到具有表面功能的聚合物基体,该表面功能反映了晶体面并能够促进方解石的成核。我们期望定向成核的分子印迹方法可以应用于方解石以外的晶体。

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