Synchrotron radiation provides comprehensive probing tools to study structural, electronic, and magnetic transition for materials under extreme conditions (high pressure, high/low temperature, external electric/magnetic fields). We have utilized these advanced techniques to study the structural stability, phase diagram in x (chemical), P (pressure), T (temperature) space, novel functional materials (nano-composite materials, 2D films, multiferroics, topologic insulator, superconductor), and order-disorder system (metallic glass, quasicrystals and liquids).
欢迎访问我们的实验室
在极端条件下(包括高压、高/低温和外部电/磁场)的材料结构、电子和磁性相转变的研究领域里,同步辐射已成为一项不可或缺的综合探索工具。我们的团队旨在利用同步辐射技术对以下研究方向进行深入探讨,继而取得发现和进展:
· 材料结构稳定性
· 化学成份、压力与温度空间相图
· 特种性能的功能材料(纳米复合材料、2D薄膜、多铁性、拓扑绝缘体、超导体等)
· 有序-无序系统(金属玻璃、准晶体、液体等)