Area of research
Renewable Energy, Sustainability and the Environment · Mechanical Engineering
Research interest
Research topics from publications: Anion‐Modulated HER and OER Activities of 3D Ni–V‐Based Interstitial Compound Heterojunctions for High‐Efficiency and Stable Overall Water Splitting; Interfacial Engineering of MoO2‐FeP Heterojunction for Highly Efficient Hydrogen Evolution Coupled with Biomass Electrooxidation; Phosphorus‐Modified Tungsten Nitride/Reduced Graphene Oxide as a High‐Performance, Non‐Noble‐Metal Electrocatalyst for the Hydrogen Evolution Reaction; Cost-effective large-scale synthesis of ZnO photocatalyst with excellent performance for dye photodegradation; Holey Reduced Graphene Oxide Coupled with an Mo2N–Mo2C Heterojunction for Efficient Hydrogen Evolution; Two‐Dimensional Porous Molybdenum Phosphide/Nitride Heterojunction Nanosheets for pH‐Universal Hydrogen Evolution Reaction; Trapping [PMo12O40]3− clusters into pre-synthesized ZIF-67 toward MoxCoxC particles confined in uniform carbon polyhedrons for efficient overall water splitting; Porous NiCoP nanosheets as efficient and stable positive electrodes for advanced asymmetric supercapacitors; Fine-tune the electronic structure in Co-Mo based catalysts to give easily coupled HER and OER catalysts for effective water splitting; Facile synthesis of sheet-like ZnO assembly composed of small ZnO particles for highly efficient photocatalysis. Representative work: Abstract Overall water splitting driven by a low voltage is crucial for practical H 2 evolution, but it is challenging. Herein, anion‐modulation of 3D Ni–V‐based transition metal interstitial compound (TMIC) heterojunctions supported on nickel foam (Ni 3 N‐VN/NF and Ni 2 P‐VP 2 /NF) as coupled hydrogen evolution reaction (HER) and oxygen evolution reaction (OER) catalysts for efficient overall water splitting is demonstrated. The heterointerface in Ni 3 N‐VN has a suitable H* absorption energy, being favorable for enhancing HER activity with onset overpotential (η onset ) of zero and Tafel slope of 37 mV dec −1 in 1 m KOH (close to that of Pt/C/NF). For the OER, the synergy of Ni 2 P‐VP 2 wi Abstract Simultaneous highly efficient production of hydrogen and conversion of biomass into value‐added products is meaningful but challenging. Herein, a porous nanospindle composed of carbon‐encapsulated MoO 2 ‐FeP heterojunction (MoO 2 ‐FeP@C) is proposed as a robust bifunctional electrocatalyst for hydrogen evolution reaction (HER) and biomass el
3D NiCoP flowers assembled by 2D carbon-coated nanosheets as an efficient and stable positive electrode for supercapacitors
Hollow TiO <sub>2</sub> /CdS Z‐Scheme Heterojunctions with Spatially Separated Cocatalysts for Highly Selective Photodriven CO <sub>2</sub> Conversion
Porous NiCo alloy thin sheets with synergistic Co/Ni sites for high-efficiency urea-assisted electrocatalytic hydrogen production
Rutile TiO2–MoS2–CdS ternary heterojunctions with enhanced charge transfer for photocatalytic pure water splitting
Synergistic Ru/RuO2 heterojunctions stabilized by carbon coating as efficient and stable bifunctional electrocatalysts for acidic overall water splitting
Hollow NiMo-based nitride heterojunction with super-hydrophilic/aerophobic surface for efficient urea-assisted hydrogen production
Nickel‐Based Hollow Spheres with Optimized Interfacial Electronic Structures by Highly Dispersed MoN for Efficient Urea Electrolysis
Lower‐Temperature Synthesis of Nitrogen‐Rich Molybdenum Nitride/Nickel (Cobalt) Heterojunctional Assembly for the Effective Water Electrolysis
Carbon-Encapsulated Ru–Co<sub>3</sub>O<sub>4</sub> Nanosheets as Electrocatalysts for Acidic Water Oxidation
Porous S-doped carbon nitride foam with accelerated charge dynamics for synchronous photocatalytic hydrogen production and highly selective oxidation of amines
Cluster-like Mo <sub>2</sub> N anchored on reduced graphene oxide as an efficient and high-performance catalyst for deep-degree oxidative desulfurization
Fine-tune the electronic structure in Co-Mo based catalysts to give easily coupled HER and OER catalysts for effective water splitting
Recent advances in tailoring zeolitic imidazolate frameworks (ZIFs) and their derived materials based on hard template strategy for multifunctional applications
Mo−Ni‐based Heterojunction with Fine‐customized d‐Band Centers for Hydrogen Production Coupled with Benzylamine Electrooxidation in Low Alkaline Medium
Tuning electronic structure of Ni3S2 with tungsten doping for high-performance electrooxidation of 5-hydroxymethylfurfural
Recent progress in synergistic electrocatalysis for generation of valuable products based on water cycle
The “mediated molecular”-assisted construction of Mo2N islands dispersed on Co-based nanosheets for high-efficient electrocatalytic hydrogen evolution reaction
The synergy of Co-MoN-MgO on 2D carbon sheets for effective catalytic hydrogenation
Vanadium‐Incorporated CoP<sub>2</sub> with Lattice Expansion for Highly Efficient Acidic Overall Water Splitting
Unraveling the mechanism for paired electrocatalysis of organics with water as a feedstock
Few-layered MoS2 anchored on 2D porous C3N4 nanosheets for Pt-free photocatalytic hydrogen evolution
Two-dimensional assembly made up of ZIF-8 particles for the high-efficient capture of the iodine and dyes
Vanadium‐Incorporated CoP<sub>2</sub> with Lattice Expansion for Highly Efficient Acidic Overall Water Splitting
The confined growth of few-layered and ultrashort-slab Ni-promoted MoS2 on reduced graphene oxide for deep-degree hydrodesulfurization
Synchronous regulation of morphology and electronic structure of FeNi-P nanosheet arrays by Zn implantation for robust overall water splitting
A dual-active Co-CoO heterojunction coupled with Ti3C2-MXene for highly-performance overall water splitting
2D porous molybdenum nitride/cobalt nitride heterojunction nanosheets with interfacial electron redistribution for effective electrocatalytic overall water splitting
Hollow CoP spheres assembled from porous nanosheets as high-rate and ultra-stable electrodes for advanced supercapacitors
Integration of heterointerface and porosity engineering to achieve efficient hydrogen evolution of 2D porous NiMoN nanobelts coupled with Ni particles
Interfacial Engineering of MoO<sub>2</sub>‐FeP Heterojunction for Highly Efficient Hydrogen Evolution Coupled with Biomass Electrooxidation