Area of research
Materials Chemistry · Electrical and Electronic Engineering
Research interest
Research focused on Perovskite (structure) and Nanocomposite, with related work in White light, Dispersity, Nanocrystal. Notable publications include 'Highly stable CsPbBr 3 quantum dots coated with alkyl phosphate for white light-emitting diodes', 'Monodisperse and brightly luminescent CsPbBr 3 /Cs 4 PbBr 6 perovskite composite nanocrystals', and 'Chemical Transformation of Lead Halide Perovskite into Insoluble, Less Cytotoxic, and Brightly Luminescent CsPbBr 3 /CsPb 2 Br 5 Composite Nanocrystals for Cell Imaging'.
Theoretical insight into the intrinsic electronic transport properties of graphene–biphenylene–graphene nanosheets and nanoribbons: a first-principles study
Construction of WO<sub>3</sub> quantum dots/TiO<sub>2</sub> nanowire arrays type II heterojunction <i>via</i> electrostatic self-assembly for efficient solar-driven photoelectrochemical water splitting
Chemical Transformation of Lead Halide Perovskite into Insoluble, Less Cytotoxic, and Brightly Luminescent CsPbBr<sub>3</sub>/CsPb<sub>2</sub>Br<sub>5</sub> Composite Nanocrystals for Cell Imaging
An ultrafast responsive and sensitive ratiometric fluorescent pH nanoprobe based on label-free dual-emission carbon dots
Monodisperse and brightly luminescent CsPbBr<sub>3</sub>/Cs<sub>4</sub>PbBr<sub>6</sub> perovskite composite nanocrystals
Controllable and facile synthesis of CsPbBr3-Cs4PbBr6 perovskite composites in pure polar solvent
Highly stable CsPbBr<sub>3</sub> quantum dots coated with alkyl phosphate for white light-emitting diodes
Nanocomposites of CsPbBr<sub>3</sub> perovskite nanocrystals in an ammonium bromide framework with enhanced stability
Rheology and Processing of Laponite/Polymer Nanocomposites
Preparation and characterization of covalently bonded <scp>PVA</scp>/Laponite/<scp>HAPI</scp> nanocomposite multilayer freestanding films by layer‐by‐layer assembly
Layer‐by‐layer assembled hydrogel nanocomposite film with a high loading capacity