Deep Water & Hydrous Minerals
Track how water is stored, transported, and transformed in dense hydrous phases from subducted slabs to the lower mantle and core–mantle boundary.
Link slot / 链接位→The CREAM group investigates deep volatile cycles, water–mineral chemistry, and extreme-condition materials by combining laser-heated diamond-anvil-cell experiments, synchrotron probes, spectroscopy, first-principles calculations, and machine-learning workflows.
研究组聚焦深部水与碳氢氧挥发分循环、深部矿物—水反应及其对地球宜居性和行星内部演化的影响,发展高温高压实验、原位谱学/衍射和计算矿物物理方法,探索“深部化学引擎”如何连接地幔、核幔边界与地表环境。
Track how water is stored, transported, and transformed in dense hydrous phases from subducted slabs to the lower mantle and core–mantle boundary.
Link slot / 链接位→Understand how water–mineral reactions, oxygen-rich phases, and hydrous magma-ocean crystallization may regulate deep redox states and surface oxidation.
Link slot / 链接位→Probe hydrogen, carbon, oxygen, and charge transport in superionic minerals and pressure-tuned materials using integrated experiments and computation.
Link slot / 链接位→




11/23/2025 NSR Symposium session on “Habitable Earth and volatiles” and deep Earth processes modulating surface oxidation.
10/20/2025 Invited presentation at the Chinese Crystallography Society annual conference on hydrous stishovite phase transitions.
09/30/2025 AIRAPT oral talk on Landau-type transition in hydrous stishovite.
09/23/2025 IUCr High Pressure Workshop invited talk on hierarchical superionic transition in high-pressure H₂CO₃.
08/10/2025 Keynote on deep Earth processes, surface oxidized conditions, and habitability.
08/26/2024 Qingyang Hu was granted the Distinguished Young Scholar of NSFC.