Area of research
Materials Chemistry · Electronic, Optical and Magnetic Materials
Research interest
Research interests include Nanoclusters, Nanotechnology, Materials science, Chemistry, Crystallography, and Self-healing hydrogels.
Redefining Metal Organic Frameworks in Biosensors: Where Are We Now?
Stretchable ionic–electronic bilayer hydrogel electronics enable in situ detection of solid-state epidermal biomarkers
Battery-free and AI-enabled multiplexed sensor patches for wound monitoring
Carbon Dot-Doped Hydrogel Sensor Array for Multiplexed Colorimetric Detection of Wound Healing
Co‐Encapsulating Enzymes and Carbon Dots in Metal–Organic Frameworks for Highly Stable and Sensitive Touch‐Based Sweat Sensors
Protein-Templated Metal Nanoclusters: Molecular-like Hybrids for Biosensing, Diagnostics and Pharmaceutics
Skin‐Attachable Ink‐Dispenser‐Printed Paper Fluidic Sensor Patch for Colorimetric Sweat Analysis
Hydrogel‐Based Flexible Electronics
Nanosilver-enhanced AIE photosensitizer for simultaneous bioimaging and photodynamic therapy
Understanding seed-mediated growth of gold nanoclusters at molecular level
Precise control of alloying sites of bimetallic nanoclusters via surface motif exchange reaction
Introducing Amphiphilicity to Noble Metal Nanoclusters via Phase-Transfer Driven Ion-Pairing Reaction
Enhancing stability through ligand-shell engineering: A case study with Au25(SR)18 nanoclusters
Identification of a Highly Luminescent Au<sub>22</sub>(SG)<sub>18</sub> Nanocluster
Presentation matters: Identity of gold nanocluster capping agent governs intracellular uptake and cell metabolism
Counterion‐Assisted Shaping of Nanocluster Supracrystals
Convenient purification of gold clusters by co-precipitation for improved sensing of hydrogen peroxide, mercury ions and pesticides
Protein-based fluorescent metal nanoclusters for small molecular drug screening
Luminescent Noble Metal Nanoclusters as an Emerging Optical Probe for Sensor Development
Scalable and Precise Synthesis of Thiolated Au<sub>10–12</sub>, Au<sub>15</sub>, Au<sub>18</sub>, and Au<sub>25</sub> Nanoclusters via pH Controlled CO Reduction
Lighting up thiolated Au@Ag nanoclusters via aggregation-induced emission
Precursor engineering and controlled conversion for the synthesis of monodisperse thiolate-protected metal nanoclusters
Two‐Phase Synthesis of Small Thiolate‐Protected Au<sub>15</sub> and Au<sub>18</sub> Nanoclusters
Tailoring the protein conformation to synthesize different-sized gold nanoclusters
Observation of Cluster Size Growth in CO-Directed Synthesis of Au<sub>25</sub>(SR)<sub>18</sub> Nanoclusters
Fast Synthesis of Thiolated Au<sub>25</sub> Nanoclusters via Protection–Deprotection Method