Area of research
Inorganic Chemistry · Catalysis
Research interest
Research interests include Materials science, Intrusion, Wetting, Metal-organic framework, Nanotechnology, and Chemistry.
Tuning the Wettability of Hydrophobic Metal–Organic Frameworks by Linker-Doping
Crystallite Size Effects on the Heat of Water Intrusion/Extrusion into/from Metal–Organic Frameworks
Exogenic and endogenic tuning of intrusion pressure in zinc imidazolate frameworks
Water intrusion in hydrophobic MOFs with complex topology: A glimpse of the intrusion mechanism of Cu2(tebpz)
Exploring the Heat of Water Intrusion into a Metal–Organic Framework by Experiment and Simulation
Mild-Temperature Supercritical Water Confined in Hydrophobic Metal–Organic Frameworks
Effect of linker hybridization on the wetting of hydrophobic metal-organic frameworks
Tuning Wetting–Dewetting Thermomechanical Energy for Hydrophobic Nanopores via Preferential Intrusion
Triboelectrification During Water Intrusion–Extrusion into‐from Hydrophobic Nanopores
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)
Effect of Linker Hybridization on the Wetting of Hydrophobic Metal-Organic Frameworks
Optimization of the wetting-drying characteristics of hydrophobic metal organic frameworks via crystallite size: The role of hydrogen bonding between intruded and bulk liquid
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
Hydrophobicity of molecular-scale textured surfaces: The case of zeolitic imidazolate frameworks, an atomistic perspective
Intrusion and extrusion of liquids in highly confining media: bridging fundamental research to applications
A Computational Analysis of the Reaction of SO2 with Amino Acid Anions: Implications for Its Chemisorption in Biobased Ionic Liquids