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首页> 外文期刊>Angewandte Chemie >Hydrogels from Amorphous Calcium Carbonate and Polyacrylic Acid: Bio-Inspired Materials for 'Mineral Plastics'
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Hydrogels from Amorphous Calcium Carbonate and Polyacrylic Acid: Bio-Inspired Materials for 'Mineral Plastics'

机译:来自无定形碳酸钙和聚丙烯酸的水凝胶:“矿物塑料”的生物启发材料

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摘要

Given increasing environmental issues due to the large usage of non-biodegradable plastics based on petroleum, new plastic materials, which are economic, environmentally friendly, and recyclable are in high demand. One feasible strategy is the bio-inspired synthesis of mineral-based hybrid materials. Herein we report a facile route for an amorphous CaCO3 (ACC)-based hydrogel consisting of very small ACC nanoparticles physically cross-linked by poly(acrylic acid). The hydrogel is shapeable, stretchable, and self-healable. Upon drying, the hydrogel forms free-standing, rigid, and transparent objects with remarkable mechanical performance. By swelling in water, the material can completely recover the initial hydrogel state. As a matrix, thermochromism can also be easily introduced. The present hybrid hydrogel may represent a new class of plastic materials, the "mineral plastics".
机译:由于基于石油的非可生物降解塑料的巨大使用量增加了越来越多的环境问题,新的塑料材料是经济,环保和可回收的需求。 一种可行的策略是生物启发性矿物杂种材料的合成。 在此,我们报告了由基于聚(丙烯酸)物理交联的非常小的ACC纳米颗粒组成的无定形CaCO3(ACC)的容易途径。 水凝胶是可塑性的,可伸缩的和自愈的。 干燥后,水凝胶形成独立式,刚性和透明的物体,具有显着的机械性能。 通过在水中溶胀,材料可以完全恢复初始水凝胶状态。 作为基质,也可以容易地引入热致变色。 本发明的Hybrid Hydrogel可以代表一类新的塑料材料,“矿物塑料”。

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