Tuning the Stability and Crystallization Pathway of Georgeite via Solution Parameters

摘要

Abstract Amorphous phases typically serve as pivotal intermediates in biomineralization and functional materials synthesis due to their high reactivity and metastability. However, the stability and crystallization pathways of amorphous phases depend on many factors and are difficult to control. Amorphous basic copper carbonate (ABCC), or georgeite, is a key precursor of basic copper carbonate (BCC) and other copper‐based functional materials with great potential for application. In this work, combining various in situ and ex situ characterization techniques, a comprehensive view on the stability and crystallization pathways of ABCC is provided. The results indicate that the structure and particle size of ABCC prepared at different initial concentrations are slightly different, which drastically influence their thermal stability under heating in air. Furthermore, the transformation from ABCC to BCC in aqueous solution proceeds via the attachment of nanoparticles, where the interfacial structural rearrangement during aggregation dominated the crystallization kinetics. This observations challenge the classical view of crystallization that nucleation barrier or the supersaturation controls the crystallization kinetic. This study can help researchers further understand the crystallization mechanism from amorphous to crystalline phase and provide guidance for stabilizing the amorphous phase.

出版物
Advanced Functional Materials
汪琦航
汪琦航
博士后

博士后,主要研究方向包括无机离子调控碳酸钙晶体生长过程、陶瓷材料室温致密化等

王吉林
王吉林
教授

桂林理工大学材料科学与工程学院教授,广西八桂青年拔尖人才,主要研究方向为薄膜太阳电池及其封装热管理、氮化硼纳米材料与先进陶瓷。

龙飞
龙飞
教授

桂林理工大学材料科学与工程学院教授、博士生导师,广西特聘专家,主要研究方向为化合物半导体薄膜材料与器件、精细碳酸钙的开发与产业化。

傅正义
傅正义
中国工程院院士

中国工程院院士,武汉理工大学教授。

邹朝勇
邹朝勇
研究员

武汉理工大学材料复合新技术国家重点实验室研究员,国家级高层次人才(青年项目),湖北省高层次人才,主要研究方向是生物过程启示的制备技术