Area of research
Materials Chemistry · Physical and Theoretical Chemistry
Research interest
Research focused on Compressibility and Microporous material, with related work in Supercapacitor, Crystallinity, Metal-organic framework. Notable publications include 'Robust and conductive two-dimensional metal−organic frameworks with exceptionally high volumetric and areal capacitance', 'In situ visualization of loading-dependent water effects in a stable metal–organic framework', and 'Mechanism of Water Intrusion into Flexible ZIF-8: Liquid Is Not Vapor'.
Mild-Temperature Supercritical Water Confined in Hydrophobic Metal–Organic Frameworks
The role of Li doping in layered/layered NaxLiyNi0.4Fe0.2Mn0.4O2 intergrowth electrodes for sodium ion batteries
Bubbles enable volumetric negative compressibility in metastable elastocapillary systems
Counterintuitive Trend of Intrusion Pressure with Temperature in the Hydrophobic Cu <sub>2</sub> (tebpz) MOF
Counterintuitive Trend of Intrusion Pressure with Temperature in the Hydrophobic Cu <sub>2</sub> (tebpz) MOF (Small 42/2024)
Mechanism of Water Intrusion into Flexible ZIF-8: Liquid Is Not Vapor
Effect of Crystallite Size on the Flexibility and Negative Compressibility of Hydrophobic Metal–Organic Frameworks
Bubbles enable volumetric negative compressibility in metastable elastocapillary systems
Coherent approach to two-dimensional heterolayered oxychalcogenides using molten hydroxides
New Compounds and Phase Selection of Nickel Sulfides via Oxidation State Control in Molten Hydroxides
In situ visualization of loading-dependent water effects in a stable metal–organic framework
Robust and conductive two-dimensional metal−organic frameworks with exceptionally high volumetric and areal capacitance