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Control of calcium carbonate polymorphism and morphology through biomimetic mineralization by means of nanotechnology

机译:纳米技术通过仿生矿化控制碳酸钙的多态性和形态

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In vitro biomimetic mineralization by means of nanotechnology allows the formation of calcium carbonate polymorphs at low temperatures (<25degreesC) under a CO2 atmosphere of 500-1500ppm. A two-dimensional zinc-ion ordered array (zinc array), which acts as an active-site mimic of carbonic anhydrase, has been prepared by immersing the self-organized monolayer of 3-(2-imidazolin-1-y)propyltriethosilane on mica (ImSi substrate) into aqueous zinc solution. The zinc array mounted on the ImSi substrate catalyzed the conversion from CO2 to HCO3-, and accelerated the formation of calcium carbonate. In situ X-ray diffraction data of the formed calcium carbonate on the poly(L-aspartate)-coated chitin substrate (pAsp substrate), with calcium ion-recognition sites, demonstrated that the interaction between the zinc array and pAsp substrates formed both vaterite and calcite at low temperature (15degreesC) and mainly vaterite at 25degreesC; this interaction also controlled the morphology of calcium carbonate formed on pAsp substrate. [References: 47]
机译:通过纳米技术的体外仿生矿化可以在低温(<25℃)和500-1500ppm的CO2气氛下形成碳酸钙多晶型物。通过将自组织的3-(2-咪唑啉-1-y)丙基三乙硅烷单分子层浸在碳上,制备了一个二维碳离子顺序阵列(锌阵列),该阵列用作碳酸酐酶的活性位点模拟物。将云母(ImSi底物)放入锌水溶液中。安装在ImSi基板上的锌阵列催化了从CO2到HCO3-的转化,并加速了碳酸钙的形成。在具有钙离子识别位点的聚(L-天冬氨酸)涂层的几丁质底物(pAsp底物)上形成的碳酸钙的原位X射线衍射数据表明锌阵列和pAsp底物之间的相互作用形成了球ate石低温(15℃)下的方解石,主要是25℃下的球ate石;这种相互作用还控制了在pAsp底物上形成的碳酸钙的形态。 [参考:47]

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