Area of research
Materials Chemistry · Electrical and Electronic Engineering
Research interest
Research interests include Graphene, Materials science, Chemistry, Oxide, Hydrogen peroxide, and Anode.
Evaluation of Ti3C2Tx MXene-supported germanium sulfide as sodium-ion battery anodes: A comparison with reduced graphene oxide supports
Hydrogen bonding of H<sub>2</sub>O<sub>2</sub> molecules in crystal structures of alkali metal and tetraethylammonium nitrate peroxosolvates
Synergism of primary and secondary interactions in a crystalline hydrogen peroxide complex with tin
Enhanced charge capacity and stability of Germanium(IV) Sulfide-Based anodes through Triton X100-Assisted synthesis and polysulfide shuttle mitigation
Crystal Structure of Tetraammine Zinc(II) Peroxodisulfate and Barium Peroxodisulfate Tetrahydrate
Improved H2S sensitivity of nanosized BaSnO3 obtained by hydrogen peroxide assisted sol-gel processing
Electrochemical Behavior of Reduced Graphene Oxide Supported Germanium Oxide, Germanium Nitride, and Germanium Phosphide as Lithium-Ion Battery Anodes Obtained from Highly Soluble Germanium Oxide
Organoantimony Dihydroperoxides: Synthesis, Crystal Structures, and Hydrogen Bonding Networks
Green synthesis of zinc sulfide-reduced graphene oxide composite and its application in sodium-ion batteries
Triphenyllead Hydroperoxide: A 1D Coordination Peroxo Polymer, Single-Crystal-to-Single-Crystal Disproportionation to a Superoxo/Hydroxo Complex, and Application in Catalysis
Non-covalent interactions of the hydroperoxo group in crystalline adducts of organic hydroperoxides and their potassium salts
Probing electrochemical reactivity in an Sb<sub>2</sub>S<sub>3</sub>-containing potassium-ion battery anode: observation of an increased capacity
Stabilization of hydrogen peroxide by hydrogen bonding in the crystal structure of 2-aminobenzimidazole perhydrate
Green Synthesis of a Nanocrystalline Tin Disulfide-Reduced Graphene Oxide Anode from Ammonium Peroxostannate: a Highly Stable Sodium-Ion Battery Anode
Enhanced Thermal Buffering of Phase Change Materials by the Intramicrocapsule Sub per Mille CNT Dopant
Identification of Barium Hydroxo-Hydroperoxostannate Precursor for Low-Temperature Formation of Perovskite Barium Stannate
Hydrogen peroxide sol–gel coating of microencapsulated phase change materials by metal oxides
Hydroperoxo double hydrogen bonding: stabilization of hydroperoxo complexes exemplified by triphenylsilicon and triphenylgermanium hydroperoxides
Brush like polyaniline on vanadium oxide decorated reduced graphene oxide: Efficient electrode materials for supercapacitor
Doubly Coated, Organic–Inorganic Paraffin Phase Change Materials: Zinc Oxide Coating of Hermetically Encapsulated Paraffins
Cyclic dipeptide peroxosolvates: first direct evidence for hydrogen bonding between hydrogen peroxide and a peptide backbone
Unusual Stabilization of Zinc Peroxide by Manganese Oxide: Mechanistic Understanding by Temperature-Dependent EPR Studies
Effect of aluminum vacancies on the H<sub>2</sub>O<sub>2</sub> or H<sub>2</sub>O interaction with a gamma‐AlOOH surface. A solid‐state DFT study
Crystalline Ammonium Peroxogermanate as a Waste-Free, Fully Recyclable Versatile Precursor for Germanium Compounds
Vanadium Oxide Thin Film Formation on Graphene Oxide by Microexplosive Decomposition of Ammonium Peroxovanadate and Its Application as a Sodium Ion Battery Anode
Nanocrystalline SnS<sub>2</sub>coated onto reduced graphene oxide: demonstrating the feasibility of a non-graphitic anode with sulfide chemistry for potassium-ion batteries
GeO<sub>2</sub> Thin Film Deposition on Graphene Oxide by the Hydrogen Peroxide Route: Evaluation for Lithium-Ion Battery Anode
Graphene Oxide‐Supported β‐Tin Telluride Composite for Sodium‐ and Lithium‐Ion Battery Anodes
Synthesis of high volumetric capacity graphene oxide-supported tellurantimony Na- and Li-ion battery anodes by hydrogen peroxide sol gel processing
H<sub>2</sub>O<sub>2</sub>induced formation of graded composition sodium-doped tin dioxide and template-free synthesis of yolk–shell SnO<sub>2</sub>particles and their sensing application