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                 Materials Research, 2017, 32(7): 1213-1230.       Journal of Alloys and Compounds, 2013, 548(4): 18-22.
            [2]   Idris F M, Hashim M, Abbas Z, et al. Recent developments of smart   [13]  Novoselov K S, Fal'ko V I, Colombo L,  et al. A roadmap for
                 electromagnetic absorbers based polymer composites at gigahertz   graphene[J]. Nature, 2012, 490(7419): 192-200.
                 frequencies[J]. Journal of Magnetism  & Magnetic Materials, 2016,   [14]  Kong L,  Yin X, Zhang  Y,  et al. Electromagnetic wave absorption
                 405(13): 197-208.                                 properties  of  reduced graphene oxide modified by  maghemite
            [3]   Chen Xuegang (陈雪刚), Ye  Ying (叶瑛), Cheng Jipeng (程继鹏).   colloidal  nanoparticle clusters[J]. Journal of  Physical Chemistry,  2013,
                 Recent progress in electromagnetic  wave  absorbers[J]. Journal of   117(38): 19701–19711.
                 Inorganic Materials (无机材料学报), 2011, 26(5): 449-457.     [15] Zhang  Xiaolin( 张晓 林 ). Preparation and microwave absorbing
            [4]   Das S, Nayak G  C, Sahu S  K,  et al. Development of FeCoB/   properties  of reduced graphene oxide composite materials[D].
                 Graphene Oxide based microwave  absorbing materials for X-Band   Harbin: Harbin Institute of Technology(哈尔滨工业大学), 2011.
                 region[J]. Journal of Magnetism & Magnetic Materials, 2015, 384:   [16]  Sun X, He J, Li G,  et al. Laminated magnetic graphene with
                 224-228.                                          enhanced electromagnetic wave absorption properties[J]. Journal of
            [5]   Liu P, Huang Y, Yang Y, et al. Sandwich structures of graphene@   Materials Chemistry C, 2012, 1(4): 765-777.
                 Fe 3O 4@PANI decorated with TiO 2  nanosheets for enhanced   [17]  Wang  Y, Peng Z, Jiang W.  Size-controllable synthesis of Fe 3O 4
                 electromagnetic wave absorption properties[J]. Journal of Alloys &   nanospheres decorated graphene for  electromagnetic  wave absorber[J].
                 Compounds, 2016, 662: 63-68.                      Journal  of Materials Science Materials in Electronics, 2016, 27(6):
            [6]   Wang T, Zhang J M, Wang P, et al. The absorption mechanism of   6010-6019.
                 radar absorber and performance evaluation criterion of absorbent[J].   [18]  Zhao X,  Zhang Y L,  Wang X X,  et al. Enhanced  microwave
                 Journal of Magnetic Materials & Devices, 2016, 47(6):7-13.     absorption properties of NiFe 2O 4 nanocrystal deposited reduced
            [7]   Xu Yonggang (许勇刚), Yuan liming (袁黎明), Cai Jun (蔡军), et al.   graphene oxides[J]. Journal of Materials Science Materials in Electronics,
                 Preparation of radar absorbing materials with  broad  bandwidth  by
                 mixing carbonyl iron and FeSiAl particles[J]. Journal of Functional   2016, 27(11): 1-6.
                 Materials (功能材料), 2011, 42(S2): 555-558.      [19]  Yang H, Ye T, Lin Y, et al. Microwave absorbing properties of the
            [8]   Zhou T D, Zhou P H, Liang D F, et al. Structure and electromagnetic   ferrite composites based on graphene[J]. Journal of Alloys and
                 characteristics of flaky FeSiAl powders made by melt-quenching[J].   Compounds, 2016, 683: 567-574.
                 Journal of Alloys and Compounds, 2009, 484(1/2): 545-549.     [20]  Wang Lei (王雷). Synthesis and microwave absorption performance
            [9]   Wu G, Cheng Y,  Ren Y,  et al. Synthesis and characterization of   of three-dimensional graphene-based nanocomposites [D]. Xi’an:
                 γ-Fe 2O 3@C nanorodcarbon sphere composite and its application as   Northwestern Polytechnical University (西北工业大学), 2014.
                 microwave absorbing material[J]. Journal of Alloys and Compounds,   [21]  Chang C I, Chang K H, Shen H H, et al. A unique two-step Hummers
                 2015, 652: 346-350.                               method for  fabricating low-defect  graphene oxide  nanoribbons
            [10]  He J, Deng L W, Liu S,  et al.  Enhanced microwave absorption   through exfoliating multiwalled carbon nanotubes[J]. Journal of the
                 properties of Fe 3O 4-modified flaky FeSiAl[J]. Journal of Magnetism   Taiwan Institute of Chemical Engineers, 2014, 45(5): 2762-2769.
                 and Magnetic Materials, 2017, 444: 49-53.     [22]  Dan C, Liu X, Yu R, et al. Enhanced microwave absorption properties
            [11]  Zhang  Y, Zhou T  D. Structure and electromagnetic properties of   of flake-shaped FePCB metallic glass/graphene composites[J]. Composites
                 FeSiAl particles coated by MgO[J]. Journal of Magnetism  and   Part A, 2016, 89: 33-39.
                 Magnetic Materials, 2016, 426: 680-684.       [23]  Yan J, Huang Y, Chen X, et al. Conducting polymers-NiFe 2O 4 coated
            [12]  Sun J, Xu H L, Shen Y, et al. Enhanced microwave absorption proper   on reduced graphene oxide sheets as electromagnetic (EM) wave
                 ties of the milled flake-shaped FeSiAl/graphite composites[J].   absorption materials[J]. Synthetic Metals, 2016, 221: 291-298.




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