王得丽
教授 博导
所属大学: 华中科技大学
所属学院: 化学与化工学院
个人简介
2013.01~至今 华中科技大学化学与化工学院教授 2009.10~2012.11 美国康奈尔大学化学学院、先进能源材料研究中心博士后 2008.08~2009.09 新加坡南洋理工大学研究助理 2003.09~2008.07 武汉大学化学与分子科学学院博士 1999.09~2003.07 河南师范大学化学与环境科学学院学士
研究领域
多年来一直致力于新型纳米能源材料的探索以及在燃料电池和锂电池等能量转化和储存方面的应用。在新型纳米能源材料的制备、功能化和催化机理等方面进行了探索,取得了创新性的研究成果 目前的研究方向主要集中在纳米级先进能源材料的制备与电催化性能(包括质子交换膜燃料电池电极催化剂、直接醇类燃料电池阳极催化以及阴极抗醇催化剂、碱性燃料电池催化剂等)、高能化学电源材料(包括锂电池、超级电容器等)
近期论文
Bimetallic Phosphide Heterostructure Coupled with Ultrathin Carbon Layer Boosting Overall Alkaline Water and Seawater Splitting 2024-09-06 Recent Advances of Electrocatalyst and Cell Design for Hydrogen Peroxide Production 2024-09-06 Heterostructural Ni-Ni0.2Mo0.8N Interface Engineering Boosts Alkaline Hydrogen Electrocatalysis 2024-09-06 Modulating the Oxygen Reduction Selectivity in Pt or Pd Chalcogenides via the Ensemble Effect and Electronic Effect 2024-09-06 High-entropy L12-Pt(FeCoNiCuZn)3 intermetallics for ultrastable oxygen reduction reaction 2024-09-06 Self-templating construction of hollow microspheres assembled by nanosheets with exposed active planes for sodium ion storage 2024-09-06 Anchoring isolated Pd atoms on Ti3C2Tx MXene with boosted kinetics for alkaline hydrogen evolution 2024-09-06 Surface reconstruction enabled o-PdTe@Pd core-shell electrocatalyst for efficient oxygen reduction reaction 2024-09-06 Engineering Iridium-Based Oxygen Evolution Reaction Electrocatalysts for Proton Exchange Membrane Water Electrolyzers 2024-09-06 Optimizing dual-intermediates adsorption on Rh-based intermetallics for formic acid electrooxidation 2024-09-06 Single-Atom Catalysts for H2O2 Electrosynthesis via Two-Electron Oxygen Reduction Reaction 2024-09-06 Phase engineering of Pt-Mn intermetallics for durable oxygen reduction reaction electrocatalysis 2023-11-22 Superlattice and defect engineering enabled NC@VS2–x as trifunctional promoter for polysulfides catalytic conversion 2023-09-18 Ni single atoms on hollow nanosheet assembled carbon flowers optimizing polysulfides conversion for Li−S batteries 2023-09-15 Sulfurization accelerator coupled Fe1−xS electrocatalyst boosting SPAN cathode performance 2023-08-04 Pseudo-Pt Monolayer for Robust Hydrogen Oxidation 2023-02-03 Chitin Derived Carbon Anchored Ultrafine Ru Nanoparticles for Efficient Hydrogen Evolution Reaction 2022-11-18 Hollow Carbon Nanorod Confined Single Atom Rh for Direct Formic Acid Electrooxidation 2022-11-12 Engineering vacancy-defect atomic Ni sites via biowaste valorisation for high-power kinetics in lithium-sulfur batteries 2022-11-10 Constructing a superhydrophobic free-standing cathode for highly efficient H2O2 production over a wide pH range 2022-10-31 Recent Advanced of Single-Atom-Alloy for Energy Electrocatalysis 2022-09-01 Nb2CTx MXenes functionalized Co−NC enhancing electrochemical H2O2 production for organics degradation 2022-09-01 Tuning the hydrogen and hydroxyl adsorption on Ru nanoparticles for hydrogen electrode reactions via size controlling 2022-09-01 Engineering Location and Supports of Atomically Ordered L10-PdFe Intermetallics for Ultra-Anticorrosion Electrocatalysis 2022-09-01 Coupling Co–N–C with MXenes Yields Highly Efficient Catalysts for H2O2 Production in Acidic Media 2022-03-23 Highly dispersed Co atoms anchored in porous nitrogen-doped carbon for acidic H2O2 electrosynthesis 2022-03-23 Tuning the atomic configuration of Co-N-C electrocatalyst enables highly-selective H2O2 production in acidic media 2022-03-23 High-nickel ternary layered cathode materials for lithium-ion batteries: research progress, challenges and improvement strategies 2022-02-21 Investigation of MXenes as oxygen reduction electrocatalyst for selective H2O2 generation 2022-02-21 Pyranoid-O-dominated graphene-like nanocarbon for two-electron oxygen reduction reaction 2022-02-21 Engineering Ir Atomic Configuration for Switching the Pathway of Formic Acid Electrooxidation Reaction 2021-11-18 Hypercrosslinked Polymerization Enabled N-Doped Carbon Confined Fe2O3 Facilitating Li Polysulfides Interface Conversion for Li–S Batteries 2021-10-16 A Low-Temperature Carbon Encapsulation Strategy for Stable and Poisoning-Tolerant Electrocatalysts 2021-10-16 Regulated iron corrosion towards fabricating large-area self-supporting electrodes for an efficient oxygen evolution reaction 2021-10-16 Tuning Coal into Graphene-Like Nanocarbon for Electrochemical H2O2 Production with Nearly 100% Faraday Efficiency 2021-10-16 Efficient Electrochemical Production of H2O2 on Hollow N‑Doped Carbon Nanospheres with Abundant Micropores 2021-10-16 Atomic-level insight into reasonable design of metal-based catalysts for hydrogen oxidation in alkaline electrolytes 2021-10-16 Self-Optimized Ligand Effect in L12-PtPdFe Intermetallic for Efficient and Stable Alkaline Hydrogen Oxidation Reaction 2020-12-03 Recent Progress of Palladium-Based Electrocatalysts for the Formic Acid Oxidation Reaction 2020-11-18 Structure Evolution of PtCu Nanoframes from Disordered to Ordered for the Oxygen Reduction Reaction 2020-11-16 Tailoring the Antipoisoning Performance of Pd for Formic Acid Electrooxidation via an Ordered PdBi Intermetallic 2020-11-06 Surface Engineering of PdFe Ordered Intermetallics for Efficient Oxygen Reduction Electrocatalysis 2020-10-26 Optimizing Formic Acid Electrooxidation Performance by Restricting the Continuous Pd Sites in Pd-Sn Nanocatalysts