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黄威等:核壳结构复合吸波材料研究进展 ·555· netic invisible wavelength transformer with arbitrary shape.Equip 2490 Environ Eng,2016,13(1):98 (俞梁,王建江,许宝才,等.Co-Zm掺杂的W型钡铁氧体空 (刘治,李竹影,俞翔,等.形状任意的超材料电磁隐身波长 心陶瓷微珠吸波材料的制备与性能研究.人工品体学报, 变换器的设计.装备环境工程,2016,13(1):98) 2015,44(9):2490) [20]Liu Y,Li Z Y,Zhao L,et al.A design fundamental theory of el- [33]Wang GQ,Chang Y F,Wang L F,et al.Synthesis,character- liptic cylindrical invisible cloak with non-singular electromagnetie ization and microwave absorption properties of FeCo core/ tensors.Equip Environ Eng,2015,12(1):6 shell-type nanoparticles.Adr Pouder Technol,2012,23(6): (刘治,李竹影,赵林,等.一种无奇异参数椭圆柱形电磁隐 861 身斗篷的设计基础理论.装备环境工程,2015,12(1):6) [34]Wang X L,Bao X K,Guan YY,et al.Microwave absorption [21]Xu J,He F,Gai S L,et al.Nitrogen-enriched,double-shelled properties of submicro-composites of core-shell C/Co.Chin carbon/layered double hydroxide hollow microspheres for excel- Mater Res,2017,31(4):241 lent electrochemical performance.Nanoscale,2014,6(18 ) (王晓磊,包秀坤,关银燕,等.C/C。核壳亚微米复合物的 10887 吸波性能.材料研究学报,2017,31(4):241) [22]Tian C H,Du Y C,Cui C S,et al.Synthesis and microwave ab- [35]Yuan J,Yang H J.Hou Z L,et al.Ni-decorated SiC powders: sorption enhancement of yolk-shell Fe,0@C microspheres.J Enhanced high-temperature dielectric properties and microwave Mater Sci,2017,52(11):6349 absorption performance.Pouder Technol,2013,237:309 [23]Ren FJ,Yu HJ.Wang L,et al.Current progress on the modifi- [36]Wang B C,Zhang J L,Wang T,et al.Synthesis and enhanced cation of carbon nanotubes and their application in electromagnet- microwave absorption properties of Ni@NiO core-shell parti- ic wave absorption.RSC Adv,2014,4(28):14419 cles.J Alloys Compd,2013,567:21 [24]Quan B.Liang X H,Ji G B,et al.Dielectric polarization in [37]Liu T,Pang Y,Zhu M,et al.Microporous Co@CoO nanoparti- electromagnetic wave absorption:review and perspective./Alloys cles with superior microwave absorption properties.Nanoscale, Compd,2017,728:1065 2014,6(4):2447 [25]She W,Bi H,Wen Z W,et al.Tunable microwave absorption [38]Zhu Y B.Qing Y C.Jia S,et al.Microwave absorbing proper- frequency by aspect ratio of hollow polydopamine@a-MnO2 mi- ties of Si0,coated carbonyl iron particles.Mater Rev,2010,24 crospindles studied by electron holography.ACS Appl Mater Inter- (1):9 faces,2016,8(15):9782 (朱云斌,卿玉长,贾舒,等.S0,包覆羰基铁的微波吸收性 [26]Liu XX,Wu Y P,Wu C,et al.Study on permittivity of com- 能研究.材料导报,2010,24(1):9) posites with core-shell particle.Phys B Condens Matter,2010, [39]Qiao M T,Lei X F,Ma Y,et al.Dependency of tunable micro- 405(8):2014 wave absorption performance on morphology-controlled hierarchi- [27]Qu Z M,Wang Q G,Qin S L,et al.Effective permeability of cal shells for core-shell Fe,0@Mn0,composite microspheres. composites with core-shell particles.Mater Sci Technol,2012,20 Chem Eng J,2016,304:552 (3):36 [40]Liu J W,Che R C.Chen H J.et al.Microwave absorption en- (曲兆明,王庆国,素思良,等.核壳粒子复合材料的等效磁 hancement of multifunctional composite microspheres with spinel 导率.材料科学与工艺,2012,20(3):36) Fe304 cores and anatase Ti02 shells.Small,2012,8(8):1214 [28]Bergheul S,Otmane F,Azzaz M.Structural and microwave ab- [41]Zhang J,Liu W.Zhang T,et al.Research progress of conduc- sorption properties of nanostructured Fe-Co alloys.Adr Porder tive polymer compositesfor microwave absorption.Micronanoelec Technol,2012,23(5):580 tron Technol,2018(2):91 [29]Lee C C,Cheng YY,Chang H Y,et al.Synthesis and eleetro- (张捷,刘伟,张婷,等.导电聚合物基复合吸波材料的研究 magnetic wave absorption property of Ni-Ag alloy nanoparticles. 进展.微纳电子技术,2018(2):91) J Alloys Compd,2009,480(2):674 [42]Wang Y,Wang W.Zhu M F,et al.Electromagnetic wave ab- [30]Hari B,Fu W Y,Yang H B,et al.Preparation and properties of sorption polyimide fabric prepared by coating with core-shell Fe:0/Ni nanoparticles.Acta Mater Compos Sin,2008,25(5): NiFe2O@PANI nanoparticles.RSC Adr,2017,7(68):42891 14 [43]Jing H X.Li QL,Ye Y,et al.Synthesis and properties of car- (哈日巴拉,付乌有,杨海滨,等.F©30Ni复合纳米颗粒 bonyl iron-polyaniline microwave absorption composites.Funct 的制备及其微波吸收特性.复合材料学报,2008,25(5): Palm,2012,25(4):393 14) (景红霞,李巧玲,叶云,等.羰基铁聚苯胺复合吸波材料 [31]Drmota A,Koselj J,Drofenik M,et al.Electromagnetic wave 的制备及性能.功能高分子学报,2012,25(4):393) absorption of polymeric nanocomposites based on ferrite with a [44]Yan LL,Wang XX,Zhao S C,et al.Highly efficient micro- spinel and hexagonal crystal structure.J Magn Magn Mater, wave absorption of magnetic nanospindle-conductive polymer hy 2012,324(6):1225 brids by molecular layer deposition.ACS Appl Mater Interfaces, [32]Yu L,Wang JJ.Xu B C.et al.Study on the preparation and 2017,9(12):11116 properties of Co-Zn doped W-type barium ferrite hollow ceramie [45]Wang W,Wang CG.Guo Y,et al.Preparation and electromag- microsphere absorbing materials.J Synth Cryst,2015,44(9): netic characteristic of novel carbon based composites./Aeronau黄 威等: 核壳结构复合吸波材料研究进展 netic invisible wavelength transformer with arbitrary shape. Equip Environ Eng, 2016, 13(1): 98 (刘冶, 李竹影, 俞翔, 等. 形状任意的超材料电磁隐身波长 变换器的设计. 装备环境工程, 2016, 13(1): 98) [20] Liu Y, Li Z Y, Zhao L, et al. A design fundamental theory of el鄄 liptic cylindrical invisible cloak with non鄄singular electromagnetic tensors. Equip Environ Eng, 2015, 12(1): 6 (刘冶, 李竹影, 赵林, 等. 一种无奇异参数椭圆柱形电磁隐 身斗篷的设计基础理论. 装备环境工程, 2015, 12(1): 6) [21] Xu J, He F, Gai S L, et al. Nitrogen鄄enriched, double鄄shelled carbon / layered double hydroxide hollow microspheres for excel鄄 lent electrochemical performance. Nanoscale, 2014, 6 ( 18 ): 10887 [22] Tian C H, Du Y C, Cui C S, et al. Synthesis and microwave ab鄄 sorption enhancement of yolk鄄鄄 shell Fe3O4 @ C microspheres. J Mater Sci, 2017, 52(11): 6349 [23] Ren F J, Yu H J, Wang L, et al. Current progress on the modifi鄄 cation of carbon nanotubes and their application in electromagnet鄄 ic wave absorption. RSC Adv, 2014, 4(28): 14419 [24] Quan B, Liang X H, Ji G B, et al. Dielectric polarization in electromagnetic wave absorption: review and perspective. J Alloys Compd, 2017, 728: 1065 [25] She W, Bi H, Wen Z W, et al. Tunable microwave absorption frequency by aspect ratio of hollow polydopamine@ 琢鄄MnO2 mi鄄 crospindles studied by electron holography. ACS Appl Mater Inter鄄 faces, 2016, 8(15): 9782 [26] Liu X X, Wu Y P, Wu C, et al. Study on permittivity of com鄄 posites with core鄄鄄shell particle. Phys B Condens Matter, 2010, 405(8): 2014 [27] Qu Z M, Wang Q G, Qin S L, et al. Effective permeability of composites with core鄄shell particles. Mater Sci Technol, 2012, 20 (3): 36 (曲兆明, 王庆国, 秦思良, 等. 核壳粒子复合材料的等效磁 导率. 材料科学与工艺, 2012, 20(3): 36) [28] Bergheul S, Otmane F, Azzaz M. Structural and microwave ab鄄 sorption properties of nanostructured Fe鄄鄄 Co alloys. Adv Powder Technol, 2012, 23(5): 580 [29] Lee C C, Cheng Y Y, Chang H Y, et al. Synthesis and electro鄄 magnetic wave absorption property of Ni鄄鄄Ag alloy nanoparticles. 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Dependency of tunable micro鄄 wave absorption performance on morphology鄄controlled hierarchi鄄 cal shells for core鄄shell Fe3O4 @ MnO2 composite microspheres. Chem Eng J, 2016, 304: 552 [40] Liu J W, Che R C, Chen H J, et al. Microwave absorption en鄄 hancement of multifunctional composite microspheres with spinel Fe3O4 cores and anatase TiO2 shells. Small, 2012, 8(8): 1214 [41] Zhang J, Liu W, Zhang T, et al. Research progress of conduc鄄 tive polymer composites for microwave absorption. Micronanoelec鄄 tron Technol, 2018(2): 91 (张捷, 刘伟, 张婷, 等. 导电聚合物基复合吸波材料的研究 进展. 微纳电子技术, 2018(2): 91) [42] Wang Y, Wang W, Zhu M F, et al. Electromagnetic wave ab鄄 sorption polyimide fabric prepared by coating with core鄄鄄 shell NiFe2O4@ PANI nanoparticles. RSC Adv, 2017, 7(68): 42891 [43] Jing H X, Li Q L, Ye Y, et al. Synthesis and properties of car鄄 bonyl iron鄄polyaniline microwave absorption composites. J Funct Polym, 2012, 25(4): 393 (景红霞, 李巧玲, 叶云, 等. 羰基铁鄄聚苯胺复合吸波材料 的制备及性能. 功能高分子学报, 2012, 25(4): 393) [44] Yan L L, Wang X X, Zhao S C, et al. Highly efficient micro鄄 wave absorption of magnetic nanospindle鄄鄄 conductive polymer hy鄄 brids by molecular layer deposition. ACS Appl Mater Interfaces, 2017, 9(12): 11116 [45] Wang W, Wang C G, Guo Y, et al. Preparation and electromag鄄 netic characteristic of novel carbon based composites. J Aeronau鄄 ·555·
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