(1)杨若楠.
Electrocatalysis synergism motivated by low energy d-orbitals at high spin state for long-lifespan Li-O2 batteries
.Applied Catalysis B-Environment and Energy
.2026
 
(381)
(2)Huancheng Huang.
Surface Phosphatization for a Sawdust-Derived Carbon Catalyst as Kinetics Promoter and Corrosion Preventer in Lithium–Oxygen Batteries
.Advanced Functional Materials
.2021
 
(17)
(3)何彪.
MoSe2@CNT Core–Shell Nanostructures as Grain Promoters Featuring a Direct Li2O2 Formation/Decomposition Catalytic Capability in Lithium-Oxygen Batteries
.Advanced Energy Materials
.2021
 
(18)
(4)Sun, Chaoyang.
Modulating the d-Band Center of RuO2 via Ni Incorporation for Efficient and Durable Li–O2 batteries
.small
.2024
 
(5)张修齐.
Electronic State Synergy of Dinuclear Catalytic Center in Wolframite-type (CoMo)octMotetO Activates Efficient d-p/π* Interaction During Multiphasic Electrocatalysis in Full Range Ambient Air for Li-Air Battery
.Advanced Functional Materials
.2025
 
(e06249)
(6)Sun, Chaoyang.
Partial-Oxidation Enabling Homologous Ru/RuO2 Heterostructures With Proper d-Dand Center as Efficient and Durable Cathode Catalysts for Ultralong Cycle Life in Li-O2 Batteries
.advanced energy materials
.2024
 
(7)于涵.
Homogeneous In-Plane Lattice Strain Enabling d-Band Center Modulation and Efficient d–π Interaction for an Ag2Mo2O7 Cathode Catalyst With Ultralong Cycle Life in Li-O2 Batteries
.Advanced Energy Materials
.2024
 
(36)
(8)李霞.
A high-entropy cathode catalyst with multiphase catalytic capability of Li2O2 and Li2CO3 enabling ultralong cycle life in Li-air batteries
.能源环境科学
.2024
 
(9)张冬梅.
Mutually Activated 2D Ti0.87O2/MXene Monolayers Through Electronic Compensation Effect as Highly Efficient Cathode Catalysts of Li-O2 Batteries
.Advanced Functional Materials
.2024
 
(10)李娜.
Development and application of phase diagrams for Li-ion batteries using CALPHAD approach
.Progress in Natural Science-Materials International
.2019
 
(29)
(11)
Electronic “Bridge” Construction via Ag Intercalation to Diminish Catalytic Anisotropy for 2D Tin Diselenide Cathode Catalyst in Lithium–Oxygen Batteries
.advanced energy materials
.2022
,12 
(27)
(12)冯娟娟.
Stacking surface derived catalytic capability and by-product prevention for high efficient two dimensional Bi2Te3 cathode catalyst in Li-oxygen batteries
.Applied Catalysis B: Environmental
.2022
,318 
(13)
Highly Stable Garnet Fe<sub>2</sub>Mo<sub>3</sub>O<sub>12</sub> Cathode Boosts the Lithium-Air Battery Performance Featuring a Polyhedral Framework and Cationic Vacancy Concentrated Surface
.ADVANCED SCIENCE
.2023
,10 
(12)
(14)
Precise Engineering of Octahedron-Induced Subcrystalline CoMoO4 Cathode Catalyst for High-Performance Li-Air Batteries
.Advanced Functional Materials
.2023
 
(15)张国梁.
A Multifunctional Wood-Derived Separator Towards the Problems of Semi-Open System in Lithium-Oxygen Batteries
.Advanced Functional Materials
.2023
,33 
(40)
(16)国梁.
Pd cluster decorated free standing flexible cathode for high performance Li-oxygen batteries
.NANO RESEARCH
.2023
 
(17)张国梁.
2D SnSe Cathode Catalyst Featuring an Efficient Facet-Dependent Selective Li2O2 Growth/Decomposition for Li–Oxygen Batteries
.advanced energy materials
.2022
,12 
(21)
(18)
Highly efficient two-dimensional Ag2Te cathode catalyst featuring a layer structure derived catalytic anisotropy in lithium-oxygen batteries
.能源存储材料
.2022
,50 
:96-104
(19)夏青.
MnCo2S4-CoS1.097 Heterostructure Nanotubes as High Efficiency Cathode Catalysts for Stable and Long-Life Lithium-Oxygen Batteries Under High Current Conditions
.ADVANCED SCIENCE
.2021
,8 
(22)
(20)刘欢.
Thermodynamic Perspective: Insights into the Capacity Increase Phenomenon and Regulation of the Capacity Tendency of MnO for Lithium-Ion Battery Anodes
.ACS Appl. Energy Mater.
.2021
,4 
(11):12662
(21)张希华.
MOF-template derived hollow CeO2/Co3O4 polyhedrons with efficient cathode catalytic capability in Li-O2 batteries
.CHINESE CHEMICAL LETTERS
.2021
 
(32(2021)):2438
(22)李娜.
Ti3C2Tx MXene cathode catalyst with efficient decomposition Li2O2 and high-rate cycle stability for Li-O-2 batteries
.ELECTROCHIMICA ACTA
.2021
,388 
(23)夏青.
Phase modulation of 1T/2H MoSe2 nanoflowers for highly efficient bifunctional electrocatalysis in rechargeable Li-O-2 batteries
.Journal of Materials Chemistry A
.2021
 
(24)Hou, Chuanxin.
Agaric-like anodes of porous carbon decorated with MoO2 nanoparticles for stable ultralong cycling lifespan and high-rate lithium/sodium storage
.胶体与界面
.2021
,596 
:396
(25)李佳佳.
Polarized nucleation and efficient decomposition of Li2O2 for Ti2C MXene cathode catalyst under a mixed surface condition in lithium-oxygen batteries
.Energy Storage Materials
.2021
,35 
:669
(26)李高阳.
Highly Efficient Nb2C MXene Cathode Catalyst with Uniform O-Terminated Surface for Lithium-Oxygen Batteries
.Advanced Energy Materials
.2020
 
(27)刘晓猛.
Tunable Cationic Vacancies of Cobalt Oxides for Efficient Electrocatalysis in Li-O(2)Batteries
.Advanced Energy Materials
.2020
 
(28)许浩然.
Metal-Organic-Framework Derived Core-Shell N-Doped Carbon Nanocages Embedded with Cobalt Nanoparticles as High-Performance Anode Materials for Lithium-Ion Batteries
.Advanced functional materials
.2020
,30 
(50)
(29)侯传信.
Interfacial Superassembly of Grape-Like MnO-Ni@C Frameworks for Superior Lithium Storage
.ACS Applied Materials & Interfaces
.2020
,12 
(12):13770
(30)张凯琪.
Trace bismuth and iodine co-doping enhanced thermoelectric performance of PbTe alloys
.Journal of Physics D: Applied Physics
.2020
,53 
(24)
(31)王煜.
A free-standing CeO2/Co3O4 nanowires electrode featuring a controllable discharge/charge product evolution route with enhanced catalytic performance for Li-O-2 batteries
.APPLIED MATERIALS TODAY
.2020
,19 
(32)王煜.
Nanowires embedded porous TiO2@C nanocomposite anodes for enhanced stable lithium and sodium ion battery performance
.Ceramics International
.2020
,46 
(7):9119
(33)党聪聪.
Novel MoSi2 catalysts featuring surface activation as highly efficient cathode materials for long-life Li-O-2 batteries
.Journal of Materials Chemistry A
.2020
,8 
(1):259
(34)黄启顺.
A hierarchical porous carbon supported Pd@Pd4S heterostructure as an efficient catalytic material positive electrode for Li-O-2 batteries
.JOURNAL OF POWER SOURCES
.2020
,451 
(35)黄启顺.
Insights into Ion Occupancy Manipulation of Fe-Co Oxide Free-Standing Cathodes for Li-O-2 Batteries with Enhanced Deep Charge Capability and Long-Term Capability
.ACS Applied Materials & Interfaces
.2020
,12 
(27):30268
(36)解培涛.
Bio- gel derived nickel/ carbon nanocomposites with enhanced microwave absorption
.Journal of Materials Chemistry C
.2018
,6 
(32):8812
(37)王煜.
A free-standing CeO2/Co3O4 nanowires electrode featuring a controllable discharge/charge product evolution route with enhanced catalytic performancefor Li-O2 batteries
.APPLIED MATERIALS TODAY
.2020
,19 
(38)侯越.
Interfacial Super-Assembled Porous CeO2/C Frameworks Featuring Efficient and Sensitive Decomposing Li2O2 for Smart Li-O-2 Batteries
.Advanced Energy Materials
.2019
,9 
(40)
(39)王忠阳.
Direct Observation of Stable Negative Capacitance in SrTiO3@BaTiO3 Heterostructure
.Advanced Electronic Materials
.2019
 
(40)王煜.
Nanowires embedded porous TiO2@C nanocomposite anodes for enhanced stable lithium and sodium ion battery performance
.CERAMICS INTERNATIONAL
.2019
,46 
:9119
(41)侯传信.
Interfacial Superassembly of Grape-Like MnO?Ni@C Frameworks for Superior Lithium Storage
.ACS Applied Materials & Interfaces
.2020
,12 
:13770
(42)党聪聪.
Novel MoSi2 catalysts featuring surface activation as highly efficient cathode materials for long-life Li–O2 batteries
.Journal of Materials Chemistry A
.2019
,8 
:259
(43)何彪.
Superassembly of Porous Fetet(NiFe)octO Frameworks with Stable Octahedron and Multistage Structure for Superior Lithium–Oxygen Batteries
.Advanced Energy Materials
.2020
 
(44)Ma Yupeng.
Suppressed polarization by epitaxial growth of SrTiO3 on BaTiO3 nanoparticles for high discharged energy density and efficiency nanocomposites
.Nanoscale
.2020
 
(45)王俊.
Highly efficient cobalt nanoparticles anchored porous N-doped carbon nanosheets electrocatalysts for Li-O2 batteries
.Journal of Catalysis
.2019
 
(377):543
(46)王俊.
Interfacial Super-Assembled Porous CeO2/C Frameworks Featuring Efficient and Sensitive Decomposing Li2O2 for Smart Li-O2 Batteries
.Advanced Energy Materials
.2019
 
(47)王俊.
One-pot synthesized molybdenum dioxide-molybdenum carbide heterostructures coupled with 3D holey carbon nanosheets for highly efficient and ultrastable cycling lithium-ion storage
.Journal of Materials Chemistry A
.2019
 
(7)
(48)张子栋.
Formationandcharacterizationofmagneticbariumferritehollow fibers withlowcoercivityviaco-electrospun
.Journal of magnetism and magnetic materials
.2016
,412 
:55
(49)张子栋.
Negative permittivity behavior and magnetic properties of C/YIG composites at radio frequency
.Materials and design
.2016
,97 
:454
(50)何彪.
Mesoporous CoO/Co-N-C nanofibers as efficient cathode catalysts for Li-O-2 batteries
.Journal of Materials Chemistry A
.2018
,6 
(39):19075
(51)解培涛.
C/SiO<inf>2</inf>meta-composite: Overcoming the λ/a relationship limitation in metamaterials
.CARBON
.2017
,125 
:1
(52)侯传信.
Oxygen vacancy derived local build-in electric field in mesoporous hollow Co3O4 microspheres promotes high-performance Li-ion batteries
.Journal of Materials Chemistry A
.2018
,6 
(16):6967
(53)侯传信.
High performance MnO@C microcages with a hierarchical structure and tunable carbon shell for efficient and durable lithium storage
.Journal of Materials Chemistry A
.2018
,6 
(20):9723
(54)孙仲玉.
Experimental and simulation-based understanding of morphology controlled barium titanate nanoparticles under co-adsorption of surfactants
.CrystEngComm
.2017
,19 
(24):3288
(55)张子栋.
Formationandcharacterizationofmagneticbariumferritehollow fibers withlowcoercivityviaco-electrospun
.Journal of magnetism and magnetic materials
.2016
,412 
:55
(56)党锋.
Synthesis of monodispersed cubic magnetite particles through the addition of small amount of Fe 3+ into Fe (OH) 2 suspension
.urnal of crystal growth
.2010
 
(57)党锋.
Tunable negative permittivity and permeability in Fe Ni Mo/Al2O3 composites prepared by hot-pressing sintering
.Ceramics International
.2016
 
(58)党锋.
hermoelectric Performance of SrTiO3 Enhanced by Nanostructuring—Self-Assembled Particulate Film of Nanocubes
.Applied materials and interfaces
.2013
 
(59)孙凯,孙凯.
Dual percolation behaviors of electrical and thermal conductivity in metal-ceramic
.Applied Physics Letters
.2016
 
(60)解培涛.
C/SiO2 meta-composite: Overcoming the lambda/a relationship limitation in metamaterials
.CARBON
.2017
,125 
:1
(61)张子栋.
Negative permittivity behavior and magnetic properties of C/YIG composites at radio frequency
.Materials and design
.2016
,97 
:454
(62)党锋.
Growth of monodispersed SrTiO3 nanocubes by thermohydrolysis method
.CrystEngComm
.2011
 
(63)党锋.
Sonochemical coating of magnetite nanoparticles with silica
.Ultrasonics Sonochemistry
.2009
 
(64)党锋.
Sonochemical synthesis of monodispersed magnetite nanoparticles by using an ethanol–water mixed solvent
.Ultrasonics Sonochemistry
.2008
 
(65)党锋.
A new effect of ultrasonication on the formation of BaTiO 3 nanoparticles
.ULTRASON SONOCHEM
.2009
 
(66)党锋.
Characteristics of BaTiO3 particles sonochemically synthesized in aqueous solution
.Japanese Journal of Applied Physics
.2009
 
(67)党锋.
Growth of BaTiO3nanoparticles in ethanol–water mixture solvent under an
.Chemical Engineering Journal
.2011
 
(68)党锋.
Negative permittivity behavior and magnetic properties of C/YIG composites at radio frequency
.Materials and design
.2016
 
(69)党锋.
Selectively assembled 2D microarrays from binary nanocrystals
.CrystEngComm
.2016
 
(70)党锋.
Formation and characterization of magnetic barium ferrite hollow fibers with low coercivity via co-electrospun
.Journal of magnetism and magnetic materials
.2016
 
(71)党锋.
Characteristics of CeO2 Nanocubes and Related Polyhedra Prepared by Using a Liquid?Liquid Interface
.CRYSTAL GROWTH & DESIGN
.2010
 
(72)党锋.
Characteristics of Multilayered Nanostructures of CeO2 Nanocrystals Self-Assembled on an Enlarged Liquid-Gas Interface
.CRYSTAL GROWTH & DESIGN
.2011
 
(73)党锋.
Synthesis of Li–Mn–O mesocrystals with controlled crystal phasees through topotactic transformation of MnCO3
.NANOSCALE
.2013
 
(74)党锋.
In situ growth BaTiO3 nanocubes and their superlattice from an aqueous
.NANOSCALE
.2011
 
(75)党锋.
Oriented aggregation of BaTiO3 nanocrystals and large particles in the ultrasonic-assistant synthesis
.CrystEngComm
.2010
 
(76)侯越.
Oxygen vacancies promoting the electrocatalytic performance of CeO2 nanorods as cathode materials for Li-O-2 batteries
.Journal of Materials Chemistry A
.2019
,7 
(11):6552
(77)党锋.
Formation of Nanostructured MnO/Co/Solid–Electrolyte Interphase Ternary
.Chemistry–An Asian Journal
.2013
 
(78)张子栋.
Formationandcharacterizationofmagneticbariumferritehollow fibers withlowcoercivityviaco-electrospun
.Journal of magnetism and magnetic materials
.2016
,412 
:55
(79)张子栋.
Negative permittivity behavior and magnetic properties of C/YIG composites at radio frequency
.Materials and design
.2016
,97 
:454
(80)孙凯.
Dual percolation behaviors of electrical and thermal conductivity in metal-ceramic
.2016
 
(81)何彪.
Mesoporous CoO/Co-N-C nanofibers as efficient cathode catalysts for Li-O-2 batteries
.journal of materials chemistry A
.2018
,6 
(39):19075
(82)侯传信.
Oxygen vacancy derived local build-in electric field in mesoporous hollow Co3O4 microspheres promotes high-performance Li-ion batteries
.journal of materials chemistry A
.2018
,6 
(16):6967
(83)侯传信.
High performance MnO@C microcages with a hierarchical structure and tunable carbon shell for efficient and durable lithium storage
.journal of materials chemistry A
.2018
,6 
(20):9723
(84)解培涛.
C/SiO<inf>2</inf>meta-composite: Overcoming the λ/a relationship limitation in metamaterials
.CARBON
.2017
,125 
:1
(85)解培涛.
C/SiO2 meta-composite: Overcoming the lambda/a relationship limitation in metamaterials
.CARBON
.2017
,       125 
:1
(86)张子栋.
Negative permittivity behavior and magnetic properties of C/YIG composites at radio frequency
.Materials and design
.2016
,97 
:454
(87)张子栋.
Formationandcharacterizationofmagneticbariumferritehollow fibers withlowcoercivityviaco-electrospun
.Journal of magnetism and magnetic materials
.2016
,412 
:55
(88)孙仲玉.
Experimental and simulation-based understanding of morphology controlled barium titanate nanoparticles under co-adsorption of surfactants
.CrystEngComm
.2017
,        19 
(24):3288
(89)党锋.
Growth of monodispersed SrTiO3 nanocubes by thermohydrolysis method
.CrystEngComm
.2011
 
(90)党锋.
Sonochemical coating of magnetite nanoparticles with silica
.Ultrasonics Sonochemistry
.2009
 
(91)党锋.
Sonochemical synthesis of monodispersed magnetite nanoparticles by using an ethanol–water mixed solvent
.Ultrasonics Sonochemistry
.2008
 
(92)党锋.
A new effect of ultrasonication on the formation of BaTiO 3 nanoparticles
.ULTRASON SONOCHEM
.2009
 
(93)党锋.
Characteristics of BaTiO3 particles sonochemically synthesized in aqueous solution
.Japanese Journal of Applied Physics
.2009
 
(94)党锋.
Oriented aggregation of BaTiO3 nanocrystals and large particles in the ultrasonic-assistant synthesis
.CrystEngComm
.2010
 
(95)党锋.
Synthesis of monodispersed cubic magnetite particles through the addition of small amount of Fe 3+ into Fe (OH) 2 suspension
.urnal of crystal growth
.2010
 
(96)党锋.
Growth of BaTiO3nanoparticles in ethanol–water mixture solvent under an
.chemical engineering journal
.2011
 
(97)党锋.
Formation of Nanostructured MnO/Co/Solid–Electrolyte Interphase Ternary
.Chemistry–An Asian Journal
.2013
 
(98)党锋.
Tunable negative permittivity and permeability in Fe Ni Mo/Al2O3 composites prepared by hot-pressing sintering
.Ceramics International
.2016
 
(99)党锋.
Selectively assembled 2D microarrays from binary nanocrystals
.CrystEngComm
.2016
 
(100)党锋.
Formation and characterization of magnetic barium ferrite hollow fibers with low coercivity via co-electrospun
.Journal of magnetism and magnetic materials
.2016
 
(101)党锋.
Characteristics of CeO2 Nanocubes and Related Polyhedra Prepared by Using a Liquid?Liquid Interface
.《Crystal Growth and Design》
.2010
 
(102)党锋.
Characteristics of Multilayered Nanostructures of CeO2 Nanocrystals Self-Assembled on an Enlarged Liquid-Gas Interface
.《Crystal Growth and Design》
.2011
 
(103)党锋.
hermoelectric Performance of SrTiO3 Enhanced by Nanostructuring—Self-Assembled Particulate Film of Nanocubes
.Applied materials and interfaces
.2013
 
(104)党锋.
Synthesis of Li–Mn–O mesocrystals with controlled crystal phasees through topotactic transformation of MnCO3
.NANOSCALE
.2013
 
(105)党锋.
In situ growth BaTiO3 nanocubes and their superlattice from an aqueous
.NANOSCALE
.2011