Area of research
Materials Chemistry · Electrical and Electronic Engineering
Research interest
Research interests include Chemistry, Crystallography, Materials science, Amine gas treating, Supramolecular chemistry, and Detection limit.
Temperature-controlled dual-selectivity nitric oxide/acetone sensor constructed from mesoporous SnO2 tubes doped by biomass-derived graphitic carbon
Porous Cr<sub>2</sub>O<sub>3</sub> Architecture Assembled by Nano-Sized Cylinders/Ellipsoids for Enhanced Sensing to Trace H<sub>2</sub>S Gas
T- and T′-type layered perovskite Ln2CuO4 nanocrystals for enhanced sensing detection of hydrogen peroxide
CuMn<sub>2</sub>O<sub>4</sub> Spinel Nanoflakes for Amperometric Detection of Hydrogen Peroxide
Spinel CoMn2O4 hollow nanospheres for very wide linear and sensitive detection of hydrogen peroxide
Absorbent cotton derived mesoporous CeO2 hollow tubule for enhanced detection of p-xylene at low energy consumption
Potential Anti-Tumor Drug: Co-Crystal 5-Fluorouracil-nicotinamide
Inorganic acid-derived hydrogen-bonded organic frameworks to form nitrogen-rich carbon nitrides for photocatalytic hydrogen evolution
Mercury supramolecular architectures constructed from flexible unsymmetrical bis(pyridyl) ligands: Structural motif mediated by mercury-halide clusters, ligand conformations and non-covalent interactions
Influence of the [CuI] (n= 2 and 6) clusters and conformations of flexible bis(pyridyl) ligands on the topological structures and luminescent properties of cuprous iodide complexes
Effect of Co-Crystal Formers on the Supramolecular Patterns and Luminescence Properties of Co-Crystals Comprising Fenbufen and Diverse N-Heterocycles
Phosphorus‐Doped Carbon Nitride Tubes with a Layered Micro‐nanostructure for Enhanced Visible‐Light Photocatalytic Hydrogen Evolution
Phosphorus‐Doped Carbon Nitride Tubes with a Layered Micro‐nanostructure for Enhanced Visible‐Light Photocatalytic Hydrogen Evolution
Macrocyclic dinuclear, helical, layered and 3-D Ag(<scp>i</scp>) complexes constructed from AgX (X = NO<sub>3</sub><sup>−</sup> and ClO<sub>4</sub><sup>−</sup>) and flexible bis(pyridyl) ligands with a chelating spacer: syntheses, structures and photoluminescence properties
Syntheses, structures and luminescent properties of four zinc(II) coordination polymers constructed from mixed isophthalic acid and flexible unsymmetrical bis(pyridyl) ligands
Role of Anion–π Interactions in the Supramolecular Assembly of Salts Containing Asymmetrical Bis(pyridyl) Cations
Well-Designed Strategy To Construct Helical Silver(I) Coordination Polymers from Flexible Unsymmetrical Bis(pyridyl) Ligands: Syntheses, Structures, and Properties
Self-assembly of [Cu<sub>3</sub>I<sub>2</sub>]- or [CuI]<sub>n</sub>-based (n = 2, 4, and ∞) coordination polymers from unsymmetrical bis(pyridyl) and in situ ligands: syntheses, structures, and properties
Anion-assisted silver(I) coordination complexes from flexible unsymmetrical bis(pyridyl) ligands: Syntheses, structures and luminescent properties
Inorganic anion induced supramolecular architectures of flexible unsymmetrical bis(pyridyl) ionic salts mediated by various non-covalent interactions