We studied the mechanism of long range ordering effect in crystallite aggregation in both electrochemical deposition and crystallization from aqueous solution with the help of scanning probe microscopy, field-emission scanning electron icroscopy, micro-X-ray-diffraction from synchrotron radiation and optical in situ observation. The effect of physicochemical environment adjacent to the growing interface on interfacial morphology and growth mechanism is investigated. The process of self-organized growth in our systems and the factors affecting self-organization are studied. 12 papers are published in several important journals, such as Phys. Rev. Lett., J. Phys. Chem., Phys. Rev. E, and J. Phys. Soc. Jpn., etc.. This research is a solid step towards in depth understanding of interfacial growth mechanism, which is essential for control self-organized interfacial growth and for modifying the physical properties of thin films.
利用先进的形态和结构表征手段,对若干二维和准二维系统中生长界面上成核控制的晶粒聚形吞ń自硕姆窍咝孕в醒芯?探索界面生长时晶粒结晶学取向的空间自组织和尺寸自限制现象的机制,总结成核和台阶运动的一般规律,加深对界面生长物理过程的认识,为岣弑∧げ牧系闹票钢柿考拔锢硇阅芴峁┛蒲б谰?
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数据更新时间:2023-05-31
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