层状结构
碳酸钙
结晶
聚合物
无定形碳酸钙
材料科学
方解石
羧酸盐
石墨烯
化学工程
丙烯酸
纳米技术
化学
矿物学
有机化学
共聚物
复合材料
工程类
作者
Ina Rianasari,Farah Benyettou,Sudhir Kumar Sharma,Thomas N. Blanton,Serdal Kırmızıaltın,Ramesh Jagannathan
摘要
Abstract Inspired by the discovery of graphene and its unique properties, we focused our research to develop a scheme to create nacre like lamellar structures of molecular sheets of CaCO 3 interleaved with an organic material, namely carbon. We developed a facile, chemical template technique, using a formulation of poly(acrylic) acid (PAA) and calcium acetate to create lamellar stacks of single crystal sheets of CaCO 3 , with a nominal thickness of 17 Å, the same as a unit-cell dimension for calcite (c–axis = 17.062 Å), interleaved with amorphous carbon with a nominal thickness of 8 Å. The strong binding affinity between carboxylate anions and calcium cations in the formulation was used as a molecular template to guide CaCO 3 crystallization. Computational modeling of the FTIR spectra showed good agreement with experimental data and confirmed that calcium ions are bridged between polymer chains, resulting in a net-like polymer structure. The process readily lends itself to explore the feasibility of creating molecular sheets of other important inorganic materials and potentially find applications in many fields such as super capacitors and “low k di-electric” systems.
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