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Progresses in Researches on Mineral Structure and Mineral Physics (2011-2020) |
HE Hong-ping 1,2,3, ZHU Jian-xi 1,2,3, CHEN Meng 1,2, TAO Qi 1,2, TAN Da-yong 1,2, LIANG Xiao-liang 1,2, XIAN Hai-yang 1,2 |
1. CAS Key Laboratory of Mineralogy and Metallogeny,Guangzhou Institute of Geochemistry, Chinese Academy of Sciences, Guangzhou 510640, China;
2. Guangdong Provincial Key Laboratory of Mineral Physics and Materials, Geochemistry, Chinese Academy of Sciences, Guangzhou 510640, China;
3. University of Chinese Academy of Sciences, Beijing 100049, China |
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Abstract During the last 10 years (2011-2020), researches on mineralogy were dramatically promoted to molecular and atomic scales (nanoscale) by the rapid developments and applications of the techniques, such as microbeam and nanobeam in-situ analysis, high T-P and computational simulation. In this period, Chinese mineralogists earned a series of great innovative achievements in the fields of mineral phase transition and crystal growth, mineral physics, mineral microstructure, and mineral surface-interface process science. Several new natural high-pressure minerals were discovered and the novel phase transition mechanisms involved were elucidated. Investigations on both natural and synthetic samples demonstrated that mineral crystals can grow via nanoparticle attachment crystallization and amorphous-to-crystalline transformation pathways. The principles about how mineral surface structure controlling the surface reactivity and the mineral surface/interface reaction microcosmic mechanism have been revealed. Novel insights on local structure and property of minerals at the atomic scale were obtained by using computer simulation techniques. Here, we have comprehensively reviewed the progresses in mineralogical studies in China during the last 10 years, following the lines as mineral crystal growth theory, high-pressure mineralogy, mineral surface-interface interaction science, and clay mineralogy. The challenges and directions of the future mineralogical studies have also been predicted.
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Received: 12 March 2020
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