Area of research
Materials Chemistry · Electrical and Electronic Engineering
Research interest
Research focused on Graphene and Photoluminescence, with related work in Species richness, Cyclic voltammetry, Hemin. Notable publications include 'KO t Bu-Initiated Aryl C–H Iodination: A Powerful Tool for the Synthesis of High Electron Affinity Compounds', 'Distinct Biogeography of Different Fungal Guilds and Their Associations With Plant Species Richness in Forest Ecosystems', and 'Electrochemical Sensor for the Detection of 1-Hydroxypyrene Based on Composites of PAMAM-Regulated Chromium-Centered Metal–Organic Framework Nanoparticles and Graphene Oxide'.
Tailored Design of Mesoporous Metal Organic Framework Single Crystals by Kinetics‐Mediated Micelle Assembly for Efficient Asymmetrical Single‐Atom Catalysis
In-situ polymer-derived SiC/Si(B)OC ceramic nanocomposites: A sustainable potential candidate for high-temperature thermoelectric applications
Strong Lewis electron-pair bonding in vanadium oxide for ultra-fast and long-term stable Zn-ion storage
Bimetallic FeCo metal–organic framework based cascade reaction system: Enhanced peroxidase activity for antibacterial performance
Carbon-related defect control of bulk hBN single crystals growth by atmospheric-pressure metal-flux-based fusion synthesis
Electrochemical Sensor for the Detection of 1-Hydroxypyrene Based on Composites of PAMAM-Regulated Chromium-Centered Metal–Organic Framework Nanoparticles and Graphene Oxide
Cu–MOF/hemin: a bionic enzyme with excellent dispersity for the determination of hydrogen peroxide released from living cells
Distinct Biogeography of Different Fungal Guilds and Their Associations With Plant Species Richness in Forest Ecosystems
KO<sup><i>t</i></sup>Bu-Initiated Aryl C–H Iodination: A Powerful Tool for the Synthesis of High Electron Affinity Compounds
Uniform Eu3+-doped YF3 microcrystals: inorganic salt-controlled synthesis and their luminescent properties