(1)
Phosphorus-Driven Dual d-Band Harmonization for Reversible Electrocatalysis
.J. AM. CHEM. SOC.
.2025
(2)Zaixin Wei.
Negative Correlation Between Thermal and Electrical Conductivity in Epsilon-Negative Nanocomposites
.Advanced Electronic Materials
.2024
(4)
(3)Xiaoting Song.
The simultaneously achieved high permittivity and low loss in tri-layer composites via introducing negative permittivity layer
.Composites Part A: Applied Science and Manufacturing
.2024
(177)
(4)Xiaoting Song.
The realization of high permittivity and low loss via building various spatial structure composites with positive and negative permittivity layers
.Journal of Materials Research and Technology
.2024
(30)
(5)窦一川.
High-abundance and low-cost anodes for sodium-ion batteries
.CARBON NEUTRALIZATION
.2024
(6)卢俊斌.
Lightweight, ultra-broadband SiOC-based triply periodic minimal surface meta-structures for electromagnetic absorption
.Chemical Engineering Journal
.2024
(488 (2024) 151056)
(7)田焕荣.
Low-permittivity LiLn(PO3)4 (Ln = La, Sm, Eu) dielectric ceramics for microwave/millimeter-wave communication
.Journal of Advanced Ceramics
.2024
(1)
(8)田焕荣.
Design of broadband metamaterial absorber utilized by flower-shaped unit loaded with lumped-resistor
.EPJ Applied Metamaterials
.2024
,11
(9)蔡汶君.
Carbon nanofibers embedded with Fe–Co alloy nanoparticles via electrospinning as lightweight high-performance electromagnetic wave absorbers
.Rare Metals
.2024
(10)周亚.
Hierarchical heterostructure Ni2P hollow carbon spheres derived from MOFs for efficient electromagnetic wave absorption
.JOURNAL OF ALLOYS AND COMPOUNDS
.2024
(991(2024)174527)
(11)卢俊斌.
Lightweight, ultra-broadband SiOC-based triply periodic minimal surface meta-structures for electromagnetic absorption
.Chemical Engineering Journal
.2024
(488 (2024) 151056)
(12)刘子璇.
Fe@Fe3C Core-Shell Nanoparticles Embedded in Polyvinyl Alcohol-Derived Porous Carbon toward Light and High-Performance Microwave Absorption
.ECS JOURNAL OF SOLID STATE SCIENCE AND TECHNOLOGY
.2022
,11
(10)
(13)龙宇欣.
Coupling MoSe2 with Non-Stoichiometry Ni0.85 Se in Carbon Hollow Nanoflowers for Efficient Electrocatalytic Synergistic Effect on Li-O2 Batteries
.small
.2023
(14)
Bucket effect on high-performance Li-O-2 batteries based on P-doped 3D NiO microspheres with conformal growth of discharge products
.Journal of Materials Chemistry A
.2022
,10
(46):24538-24551
(15)卢俊斌.
Vat photopolymerization 3D printing gyroid meta-structural SiOC ceramics achieving full absorption of X-band electromagnetic wave
.Additive Manufacturing
.2023
(78)
(16)张子栋.
Tunable Dielectric Properties in Paraffin-Matrix Metacomposites via Macro-Scale Periodic Stacking of the Functional Fillers
.ECS Journal of Solid State Science and Technology
.2022
(11)
(17)张子栋.
A Small-Divergence-Angle Orbital Angular Momentum Metasurface Antenna
.Research
.2019
(2019)
(18)张子栋.
Paper-based flexible metamaterial for microwave applications
.EPJ Applied Metamaterials
.2021
,6
(8):1
(19)张子栋.
Targeted Double Negative Properties in Silver/Silica Random Metamaterials by Precise Control of Microstructures
.Research
.2019
(2019)
(20)张子栋.
基于人工电磁介质的宽带 吸波器研究进展
.《材料工程》
.2020
(6):23
(21)张子栋.
SiO2光子晶体结构色薄膜的制备与光学性能研究
.《材料工程》
.2019
(12):111
(22)张文锦.
Porous Fe@Fe3O4-C Nanocomposite Using Polyvinyl Alcohol Sponge as Template for Microwave Absorption
.Journal of ELECTRONIC MATERIALS
.2020
,49
(11):6394
(23)赵国静.
Dielectric properties of Ag/paper-based metacomposite with sandwich-structure forward low dielectric loss in megahertz frequency range
.Journal of Materials Science: Materials in Electronics
.2020
,31
(5):4245
(24)张子栋.
Dielectric enhancement effect in biomorphic porous carbon-based iron@iron carbide'meta-powder'for light-weight microwave absorption material design
.ADVANCED COMPOSITES AND HYBRID MATERIALS
.2022
(25)王忠阳.
Epsilon-negative behavior of BaTiO3/Ag metacomposites prepared by an in situ synthesis
.Ceramics International
.2019
,46
(7):9342
(26)张子育.
Synthesis of carbon/SiO2 core-sheath nanofibers with Co-Fe nanoparticles embedded in via electrospinning for high-performance microwave absorption
.ADVANCED COMPOSITES AND HYBRID MATERIALS
.2022
,5
(1):513
(27)姜雨良.
Nitrogen-doped carbon nanofibers with sulfur heteroatoms for improving microwave absorption
.JOURNAL OF MATERIALS SCIENCE Journal
.2020
,55
(14):5832
(28)张子栋.
Fabrication of Co/Al2O3 Composite Nanofiber via Electrospinning with Tunable Magnetic Properties
.Fibers and Polymers
.2020
,21
(11):2485
(29)范国华.
Extremely facile and green synthesis of magnetic carbon composites drawn from natural bulrush for electromagnetic wave absorbing
.JOURNAL OF ALLOYS AND COMPOUNDS
.2020
,835
(30)刘峣.
Tunable radio-frequency negative permittivity of Carbon/CaCu3Ti4O12 metacomposites
.JOURNAL OF ALLOYS AND COMPOUNDS
.2020
(834)
(31)刘峣.
Tailorable negative permittivity in Fe/BaTiO3 meta-composites
.FUNCTIONAL MATERIALS LETTERS
.2020
(12)
(32)刘峣.
Core-shell structured tungsten carbide / polypyrrole metacomposites with tailorable negative permittivity at the radio frequency
.Polymer
.2019
(188)
(33)范国华.
Facile Synthesis of Fe@Fe3C/C Nanocomposites Derived from Bulrush for Excellent Electromagnetic Wave-Absorbing Properties
.ACS Sustainable Chem. Eng.
.2019
,7
(23):18765
(34)范国华.
Negative permittivity in titanium nitride-alumina composite for functionalized structural ceramics
.Journal of the American Ceramic Society
.2019
,103
(1):403
(35)张剑.
Fabrication of Co/Al2O3 Composite Nanofiber via Electrospinning with Tunable Magnetic Properties
.Fibers and Polymers
.2020
,21
(11)
(36)姜雨良.
Chiffon cake-derived hierarchically porous carbon with efficient microwave absorption properties
.Journal of Materials Science: Materials in Electronics
.2019
,30
(21):19173
(37)付雪雁.
Flexible 2.5D Metamaterial with High Mechanical Bearing Capacity for Electromagnetic Interference Filters at Microwave Frequency
.ADVANCED ENGINEERING MATERIALS Journal
.2019
(38)王忠阳.
Paper-based metasurface: Turning waste-paper into a solution for electromagnetic pollution
.Journal of Cleaner Production
.2019
,234
:588
(39)王龙飞.
2D piezotronics in atomically thin zinc oxide sheets: Interfacing gating and channel width gating
.NANO ENERGY
.2019
,60
:724
(40)姜雨良.
Enhanced microwave absorption properties of Fe3C/C nanofibers prepared by electrospinning
.JOURNAL OF ALLOYS AND COMPOUNDS
.2019
,804
:305
(41)屈云鹏.
Low-temperature sintering Graphene/CaCu3Ti4O12 nanocomposites with tunable negative permittivity
.JOURNAL OF ALLOYS AND COMPOUNDS
.2019
,771
:699
(42)钱磊.
Three-dimensional graphene network/phenolic resin composites towards tunable and weakly negative permittivity
.Materials & Design
.2016
(43)范润华.
Metal-dielectric hybrid EM behaviour in percolative Al2O3-Fe composite
.RSC advances
.2013
,3
(48):26110
(44)陈敏.
The negative permittivity behavior of carbon nanotubes/yttrium iron garnet composites in the radio frequency
.Mater Lett
.2018
,213
:282
(45)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
(46)王忠阳.
Regulation mechanism of negative permittivity in poly (p-phenylene sulfide)/multiwall carbon nanotubes composites
.Synthetic Metals
.2018
,244
:15
(47)潘士兵.
Dielectric and magnetic relaxation behavior in Fe<inf>78</inf>Si<inf>9</inf>B<inf>13</inf>/polyaniline composites at radio-frequency range
.ECS J. Solid State Sci. Technol.
.2017
,6
(7):N87
(48)解培涛.
C/SiO<inf>2</inf>meta-composite: Overcoming the λ/a relationship limitation in metamaterials
.CARBON
.2017
,125
:1
(49)姜雨良.
Iron Granular Percolative Composites toward Radio-Frequency Negative Permittivity
.ECS JOURNAL OF SOLID STATE SCIENCE AND TECHNOLOGY
.2018
,7
(9):N132
(50)解培涛.
Carbon aerogels towards new candidates for double negative metamaterials of low density
.CARBON
.2018
,129
:598
(51)解培涛.
Tunable negative permittivity and permeability of yttrium iron garnet/polyaniline composites in radio frequency region
.Journal of Materials Science-Materials in Electronics
.2018
,29
(7):6119
(52)刘峣.
Negative permittivity behavior of titanium nitride/polyphenylene sulfide "metacomposites" under radio frequency
.Journal of Materials Science-Materials in Electronics
.2018
,29
(14):12144
(53)解培涛.
Silica microsphere templated self-assembly of a three-dimensional carbon network with stable radio-frequency negative permittivity and low dielectric loss
.Journal of Materials Chemistry C
.2018
,6
(19):5239
(54)陈敏.
The negative permittivity behavior of carbon nanotubes/yttrium iron garnet composites in the radio frequency
.Materials letters
.2018
,213
:282
(55)范国华.
Tailorable radio-frequency negative permittivity of titanium nitride sintered with different oxidation pretreatments
.Ceramics International
.2017
,43
(18):16980
(56)吴海坤.
Three-dimensional graphene network/phenolic resin composites towards tunable and weakly negative permittivity
.Materials & Design
.2017
,117
:18
(57)潘士兵.
Dielectric and Magnetic Relaxation Behavior in Fe78Si9B13/Polyaniline Composites at Radio-Frequency Range
.ECS JOURNAL OF SOLID STATE SCIENCE AND TECHNOLOGY
.2017
,6
(7)
(58)张子栋.
Formationandcharacterizationofmagneticbariumferritehollow fibers withlowcoercivityviaco-electrospun
.Journal of magnetism and magnetic materials
.2016
,412
:55
(59)钱磊.
Three-dimensional graphene network/phenolic resin composites towards tunable and weakly negative permittivity
.Materials & Design
.2016
(60)解培涛.
Negative permittivity adjusted by SiO<inf>2</inf>-coated metallic particles in percolative composites
.J Alloys Compd
.2017
,725
:1259
(61)解培涛.
C/SiO2 meta-composite: Overcoming the lambda/a relationship limitation in metamaterials
.CARBON
.2017
,125
:1
(62)张子栋.
Preparation and dielectric property of C/SiO2composite via self-assembly
.Materials science forum
.2016
(63)范润华.
Fe/Al2O3复合材料的还原制备及其表征
.《稀有金属材料与工程》
.2013
,42
(S1):165
(64)张子栋.
Tunable negative permittivity behavior and conductor–insulator transition in dual composites prepared by selective reduction reaction
.Journal of Materials Chemistry C
.2012
(65)张子栋.
Negative permittivity behavior and magnetic properties of C/YIG composites at radio frequency
.Materials and design
.2016
,97
:454
(66)张子栋.
Negative permittivity in Fe-Si-Ni/epoxy magnetic composite materials at high-frequency
.Materials Chemistry and Physics
.2015
,170
:113
(67)张子栋.
NegativepermittivitybehaviorinFe50Ni50/Al2O3 magnetic composite near percolationthreshold
.Journal of magnetism and magnetic materials
.2014
,381
:105
(68)张子栋.
Percolative cobalt/silicon nitride composites with tunable negative electromagnetic parameters
.RSC advances
.2016
,6
:82478
(69)张子栋.
Preparation and dielectric property of C/SiO2composite via self-assembly
.2016
(70)张子栋.
Preparation of SiO2matrix composite with tunable dielectric properties in radio frequency range
.2016
(71)张子栋.
Microstructure and metal–dielectric transition behaviour in a percolative Al2O3–Fe composite via selective reduction
.RSC advances
.2013
,3
(48):26110
(72)张子栋.
Large-Area, Low-Cost Infrared Metamaterial Fabrication Via Pulsed Laser Deposition with Metallic Mesh as a Shadow Mask
.Plasmonics
.2015
(73)张子栋.
Fabrication and magnetic properties of electrospun cobalt nanofibers
.Materials & Design
.2015
(74)范润华.
Ultra low percolation threshold and significantly
.Journal of Materials Chemistry C
.2014
,2
:6752
(75)张子栋.
Microstructure and metal–dielectric transition behaviour in a percolative Al2O3–Fe composite via selective reduction
.RSC advances
.2013
(76)张子栋.
Microwave absorption properties of Fe@Al2O3 nanoembedments prepared by mechanosynthesis
.Materials Chemistry and Physics
.2011
(77)张子栋.
Preparation and Characterization of α-(Fe, Al)2O3 Solid Solutions by Sol–Gel Method
.Journal of Inorganic and Organometallic Polymers and Materials
.2011
(78)范润华.
Fabrication and dielectric properties of Fe-CNT/Al2O3 bulk composite materials
.Key Engineering Materials
.2012
,v 512-515
:523
(79)范润华.
钙钛矿型锰氧化物La0.8Sr0.2MnO3的高频性能
.《稀有金属材料与工程》
.2013
,42
(S1):186
(80)范润华.
Metal-dielectric hybrid EM behaviour in percolative Al2O3-Fe composite
.RSC advances
.2013
,3
(48):26110
(81)解培涛.
Negative permittivity adjusted by SiO2-coated metallic particles in percolative composites
.JOURNAL OF ALLOYS AND COMPOUNDS
.2017
,725
:1259
(82)张子栋.
Preparation of SiO2matrix composite with tunable dielectric properties in radio frequency range
.Materials science forum
.2016
(83)解培涛.
C/SiO<inf>2</inf>meta-composite: Overcoming the λ/a relationship limitation in metamaterials
.CARBON
.2017
,125
:1
(84)钱磊.
Three-dimensional graphene network/phenolic resin composites towards tunable and weakly negative permittivity
.Materials & Design
.2016
(85)解培涛.
C/SiO2 meta-composite: Overcoming the lambda/a relationship limitation in metamaterials
.CARBON
.2017
, 125
:1
(86)范润华.
Fe/Al2O3复合材料的还原制备及其表征
.《稀有金属材料与工程》
.2013
,42
(S1):165
(87)范润华.
Ultra low percolation threshold and significantly
.JOURNAL OF MATERIALS CHEMISTRY C
.2014
,2
:6752
(88)范润华.
Fabrication and dielectric properties of Fe-CNT/Al2O3 bulk composite materials
.Key Engineering Materials
.2012
,v 512-515
:523
(89)范润华.
钙钛矿型锰氧化物La0.8Sr0.2MnO3的高频性能
.《稀有金属材料与工程》
.2013
,42
(S1):186
(90)范润华.
Metal-dielectric hybrid EM behaviour in percolative Al2O3-Fe composite
.RSC advances
.2013
,3
(48):26110
(91)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
(92)姜雨良.
Iron Granular Percolative Composites toward Radio-Frequency Negative Permittivity
.ECS JOURNAL OF SOLID STATE SCIENCE AND TECHNOLOGY
.2018
,7
(9):N132
(93)范润华.
钙钛矿型锰氧化物La0.8Sr0.2MnO3的高频性能
.《稀有金属材料与工程》
.2013
,42
(S1):186
(94)解培涛.
Negative permittivity adjusted by SiO<inf>2</inf>-coated metallic particles in percolative composites
.J Alloys Compd
.2017
,725
:1259
(95)刘峣.
Negative permittivity behavior of titanium nitride/polyphenylene sulfide "metacomposites" under radio frequency
.Journal of Materials Science-Materials in Electronics
.2018
,29
(14):12144
(96)解培涛.
Negative permittivity adjusted by SiO2-coated metallic particles in percolative composites
.JOURNAL OF ALLOYS AND COMPOUNDS
.2017
, 725
:1259
(97)范润华.
Ultra low percolation threshold and significantly
.JOURNAL OF MATERIALS CHEMISTRY C
.2014
,2
:6752
(98)王忠阳.
Regulation mechanism of negative permittivity in poly (p-phenylene sulfide)/multiwall carbon nanotubes composites
.Synthetic Metals
.2018
,244
:15
(99)范国华.
Tailorable radio-frequency negative permittivity of titanium nitride sintered with different oxidation pretreatments
.Ceramics International
.2017
, 43
(18):16980
(100)解培涛.
Carbon aerogels towards new candidates for double negative metamaterials of low density
.CARBON
.2018
,129
:598
(101)范润华.
Fe/Al2O3复合材料的还原制备及其表征
.《稀有金属材料与工程》
.2013
,42
(S1):165
(102)陈敏.
The negative permittivity behavior of carbon nanotubes/yttrium iron garnet composites in the radio frequency
.Mater Lett
.2018
,213
:282
(103)吴海坤.
Three-dimensional graphene network/phenolic resin composites towards tunable and weakly negative permittivity
.Materials & Design
.2017
, 117
:18
(104)范润华.
Fabrication and dielectric properties of Fe-CNT/Al2O3 bulk composite materials
.Key Engineering Materials
.2012
,v 512-515
:523
(105)解培涛.
Silica microsphere templated self-assembly of a three-dimensional carbon network with stable radio-frequency negative permittivity and low dielectric loss
.JOURNAL OF MATERIALS CHEMISTRY C
.2018
,6
(19):5239
(106)潘士兵.
Dielectric and Magnetic Relaxation Behavior in Fe78Si9B13/Polyaniline Composites at Radio-Frequency Range
.ECS JOURNAL OF SOLID STATE SCIENCE AND TECHNOLOGY
.2017
, 6
(7)
(107)潘士兵.
Dielectric and magnetic relaxation behavior in Fe<inf>78</inf>Si<inf>9</inf>B<inf>13</inf>/polyaniline composites at radio-frequency range
.ECS J. Solid State Sci. Technol.
.2017
,6
(7):N87
(108)解培涛.
Tunable negative permittivity and permeability of yttrium iron garnet/polyaniline composites in radio frequency region
.Journal of Materials Science-Materials in Electronics
.2018
,29
(7):6119
(109)范润华.
Metal-dielectric hybrid EM behaviour in percolative Al2O3-Fe composite
.RSC advances
.2013
,3
(48):26110
(110)解培涛.
C/SiO<inf>2</inf>meta-composite: Overcoming the λ/a relationship limitation in metamaterials
.CARBON
.2017
,125
:1
(111)解培涛.
C/SiO2 meta-composite: Overcoming the lambda/a relationship limitation in metamaterials
.CARBON
.2017
, 125
:1
(112)张子栋.
Negative permittivity behavior and magnetic properties of C/YIG composites at radio frequency
.Materials and design
.2016
,97
:454
(113)张子栋.
Negative permittivity in Fe-Si-Ni/epoxy magnetic composite materials at high-frequency
.Materials Chemistry and Physics
.2015
,170
:113
(114)张子栋.
NegativepermittivitybehaviorinFe50Ni50/Al2O3 magnetic composite near percolationthreshold
.Journal of magnetism and magnetic materials
.2014
,381
:105
(115)张子栋.
Formationandcharacterizationofmagneticbariumferritehollow fibers withlowcoercivityviaco-electrospun
.Journal of magnetism and magnetic materials
.2016
,412
:55
(116)张子栋.
Preparation and dielectric property of C/SiO2composite via self-assembly
.Materials science forum
.2016
(117)张子栋.
Preparation of SiO2matrix composite with tunable dielectric properties in radio frequency range
.Materials science forum
.2016
(118)张子栋.
Percolative cobalt/silicon nitride composites with tunable negative electromagnetic parameters
.RSC advances
.2016
,6
:82478
(119)张子栋.
Microstructure and metal–dielectric transition behaviour in a percolative Al2O3–Fe composite via selective reduction
.RSC advances
.2013
,3
(48):26110
(120)张子栋.
Microwave absorption properties of Fe@Al2O3 nanoembedments prepared by mechanosynthesis
.Materials Chemistry and Physics
.2011
(121)张子栋.
Preparation and Characterization of α-(Fe, Al)2O3 Solid Solutions by Sol–Gel Method
.Journal of Inorganic and Organometallic Polymers and Materials
.2011
(122)张子栋.
Tunable negative permittivity behavior and conductor–insulator transition in dual composites prepared by selective reduction reaction
.JOURNAL OF MATERIALS CHEMISTRY C
.2012
(123)张子栋.
Fabrication and magnetic properties of electrospun cobalt nanofibers
.Materials & Design
.2015
(124)张子栋.
Large-Area, Low-Cost Infrared Metamaterial Fabrication Via Pulsed Laser Deposition with Metallic Mesh as a Shadow Mask
.Plasmonics
.2015