Tunable design of ZnFe2O4@C@BPC hybrid with rich heterogeneous interfaces as a hydrophobic electromagnetic wave absorber
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Xinming Wu | Yan Wang | R. Cheng | Xiaochuang Di | Zhao Lu | Nian Wang
[1] R. Che,et al. Multi-dimensional C@NiCo-LDHs@Ni aerogel: Structural and componential engineering towards efficient microwave absorption, anti-corrosion and thermal-insulation , 2022, Carbon.
[2] Haibo Yang,et al. Structure design of Prussian blue analogue derived CoFe@C composite with tunable microwave absorption performance , 2022, Applied Surface Science.
[3] Haibo Yang,et al. MOFs derived flower-like nickel and carbon composites with controllable structure toward efficient microwave absorption , 2021, Composites Part A: Applied Science and Manufacturing.
[4] M. Ma,et al. Construction of MOF-derived plum-like NiCo@C composite with enhanced multi-polarization for high-efficiency microwave absorption. , 2021, Journal of colloid and interface science.
[5] Xinming Wu,et al. Controllable heterogeneous interfaces of cobalt/carbon nanosheets/ rGO composite derived from metal-organic frameworks for high-efficiency microwave attenuation , 2021, Carbon.
[6] Yan Wang,et al. Design of hierarchical core-shell ZnFe2O4@MnO2@RGO composite with heterogeneous interfaces for enhanced microwave absorption , 2021, Ceramics International.
[7] Jie Cheng,et al. Efficient microwave absorption of MOFs derived laminated porous Ni@C nanocomposites with waterproof and infrared shielding versatility , 2021, Carbon.
[8] Hongjing Wu,et al. Simultaneous Manipulation of Interfacial and Defects Polarization toward Zn/Co Phase and Ion Hybrids for Electromagnetic Wave Absorption , 2021, Advanced Functional Materials.
[9] Haibo Yang,et al. Novel bimetallic MOF derived hierarchical Co@C composites modified with carbon nanotubes and its excellent electromagnetic wave absorption properties. , 2021, Journal of colloid and interface science.
[10] T. Jing,et al. A generalizable strategy for constructing ultralight three-dimensional hierarchical network heterostructure as high-efficient microwave absorber. , 2021, Journal of colloid and interface science.
[11] Xinming Wu,et al. Heterostructure design of Ni/C/porous carbon nanosheet composite for enhancing the electromagnetic wave absorption , 2021, Carbon.
[12] Peng Zhang,et al. Attapulgite modulated thorny nickel nanowires/graphene aerogel with excellent electromagnetic wave absorption performance , 2021, Chemical Engineering Journal.
[13] L. Bi,et al. MXene-based accordion 2D hybrid structure with Co9S8/C/Ti3C2Tx as efficient electromagnetic wave absorber , 2021 .
[14] W. Du,et al. Multiple reflection and scattering effects of the lotus seedpod-based activated carbon decorated with Co3O4 microwave absorbent. , 2021, Journal of colloid and interface science.
[15] Youwei Du,et al. Constructing flower-like core@shell MoSe2-based nanocomposites as a novel and high-efficient microwave absorber , 2021 .
[16] R. Song,et al. Graphene-based anisotropic polarization meta-filter , 2021 .
[17] R. Che,et al. Hollow Engineering to Co@N‐Doped Carbon Nanocages via Synergistic Protecting‐Etching Strategy for Ultrahigh Microwave Absorption , 2021, Advanced Functional Materials.
[18] Jiahao Wu,et al. Wet chemistry synthesis of CuFe2O4/CdSe heterojunction for enhanced efficient photocatalytic H2 evolution under visible irradiation , 2021 .
[19] Lei Cai,et al. Honeycomb-like NiCo2O4@MnO2 nanosheets array/3D porous expanded graphite hybrids for high-performance microwave absorber with hydrophobic and flame-retardant functions , 2021 .
[20] Changyu Shen,et al. Multifunctional Magnetic Ti3C2Tx MXene/Graphene Aerogel with Superior Electromagnetic Wave Absorption Performance. , 2021, ACS nano.
[21] Dan Wu,et al. Efficient microwave absorber and supercapacitors derived from puffed-rice-based biomass carbon: Effects of activating temperature. , 2021, Journal of colloid and interface science.
[22] Ying Huang,et al. Magnetic porous N-doped carbon composites with adjusted composition and porous microstructure for lightweight microwave absorbers , 2021 .
[23] G. Ji,et al. Biomass-derived graphene-like porous carbon nanosheets towards ultralight microwave absorption and excellent thermal infrared properties , 2021 .
[24] Haibo Yang,et al. Construction of core-shell BaFe12O19@MnO2 composite for effectively enhancing microwave absorption performance , 2021 .
[25] L. Wang,et al. Double ligand MOF-derived pomegranate-like Ni@C microspheres as high-performance microwave absorber , 2021 .
[26] Junyuan Liao,et al. Achieving super-broad effective absorption bandwidth with low filler loading for graphene aerogels/raspberry-like CoFe2O4 clusters by N doping. , 2021, Journal of colloid and interface science.
[27] Feng Zhang,et al. Morphology-control synthesis of polyaniline decorative porous carbon with remarkable electromagnetic wave absorption capabilities , 2021 .
[28] Xuefeng Zhang,et al. Corncob-derived hierarchical porous carbon/Ni composites for microwave absorbing application , 2020 .
[29] Chen Chen,et al. Vacancies-engineered and heteroatoms-regulated N-doped porous carbon aerogel for ultrahigh microwave absorption , 2020 .
[30] Yu-Zhong Wang,et al. Porous CoNi nanoalloy@N-doped carbon nanotube composite clusters with ultra-strong microwave absorption at a low filler loading , 2020 .
[31] Yubing Dong,et al. Development of lightweight polypyrrole/cellulose aerogel composite with adjustable dielectric properties for controllable microwave absorption performance , 2020, Cellulose.
[32] Binghui Xu,et al. FeNi nanoparticles embedded reduced graphene/nitrogen-doped carbon composites towards the ultra-wideband electromagnetic wave absorption. , 2020, Journal of colloid and interface science.
[33] Yongjia Zhang,et al. MOF-derived ZnFe2O4/(Fe-ZnO) nanocomposites with enhanced acetone sensing performance , 2020 .
[34] C. Guan,et al. N-doped porous carbon nanoplates embedded with CoS2 vertically anchored on carbon cloths for flexible and ultrahigh microwave absorption , 2020 .
[35] L. Chai,et al. In-situ growth of core-shell ZnFe2O4 @ porous hollow carbon microspheres as an efficient microwave absorber. , 2020, Journal of colloid and interface science.
[36] W. Cao,et al. Assembling Nano–Microarchitecture for Electromagnetic Absorbers and Smart Devices , 2020, Advanced materials.
[37] Jingwei Zhang,et al. TiN/Ni/C ternary composites with expanded heterogeneous interfaces for efficient microwave absorption , 2020 .
[38] Meng Li,et al. Multiple polarization effect of shell evolution on hierarchical hollow C@MnO2 composites and their wideband electromagnetic wave absorption properties , 2020 .
[39] Y. H. Li,et al. Electrospun generation of Ti3C2Tx MXene@graphene oxide hybrid aerogel microspheres for tunable high-performance microwave absorption , 2020 .
[40] C. Deng,et al. Constructing and optimizing core@shell structure CNTs@MoS2 nanocomposites as outstanding microwave absorbers , 2020 .
[41] Zhichuan J. Xu,et al. A Flexible and Lightweight Biomass-Reinforced Microwave Absorber , 2020, Nano-micro letters.
[42] Panbo Liu,et al. Hybrid zeolite imidazolate framework derived N-implanted carbon polyhedrons with tunable heterogeneous interfaces for strong wideband microwave attenuation , 2020 .
[43] Jie Kong,et al. Ultra-light MXene aerogel/wood-derived porous carbon composites with wall-like "mortar/brick" structures for electromagnetic interference shielding. , 2020, Science bulletin.
[44] Xiaohui Jiang,et al. Efficient broadband electromagnetic wave absorption of flower-like nickel/carbon composites in 2–40 GHz , 2020 .
[45] Shun Rao,et al. Controlled synthesis of Fe3O4@C@manganese oxides (MnO2, Mn3O4 and MnO) hierarchical hollow nanospheres and their superior lithium storage properties , 2020 .
[46] Xuefeng Yu,et al. Multidimension-Controllable Synthesis of MOF-Derived Co@N-Doped Carbon Composite with Magnetic-Dielectric Synergy toward Strong Microwave Absorption. , 2020, Small.
[47] Xiao Zhang,et al. CoNi nanoparticles encapsulated by nitrogen-doped carbon nanotube arrays on reduced graphene oxide sheets for electromagnetic wave absorption , 2020 .
[48] Hongjing Wu,et al. Sodium citrate assisted hydrothermal synthesis of nickel cobaltate absorbers with tunable morphology and complex dielectric parameters toward efficient electromagnetic wave absorption , 2020 .
[49] W. Lu,et al. Magnetic vortex core-shell Fe3O4@C nanorings with enhanced microwave absorption performance , 2020 .
[50] S. Baik,et al. Carbon nanotube covalent bonding mediates extraordinary electron and phonon transports in soft epoxy matrix interface materials , 2020 .
[51] Wei Liu,et al. Design and synthesis of TiO2/Co/carbon nanofibers with tunable and efficient electromagnetic absorption , 2020 .
[52] Yuezhan Feng,et al. Enhanced Electromagnetic Wave Absorbing Performance of Magnetic Nanoparticles Anchored 2D Ti3C2Tx MXene. , 2019, ACS applied materials & interfaces.
[53] R. Che,et al. Self-assembly magnetized MXene avoid dual-agglomeration with enhanced interfaces for Strong Microwave Absorption through Tunable Electromagnetic Property. , 2019, ACS applied materials & interfaces.
[54] Shanshan Lv,et al. Enhanced wave-absorbing performances of silicone rubber composites by incorporating C-SnO2-MWCNT absorbent with ternary heterostructure , 2019, Ceramics International.
[55] Jiajia Liu,et al. Synthesis of fish skin-derived 3D carbon foams with broadened bandwidth and excellent electromagnetic wave absorption performance , 2019, Carbon.
[56] Chen Chen,et al. The 3D CoNi alloy particles embedded in N-doped porous carbon foams for high-performance microwave absorbers , 2019, Carbon.
[57] Panbo Liu,et al. Facile design of 3D hierarchical NiFe2O4/N-GN/ZnO composite as a high performance electromagnetic wave absorber , 2019, Chemical Engineering Journal.
[58] Zhihong Yang,et al. Mesoporous CoFe alloy@SiO2 nanocapsules with controllable Co/Fe atomic ratio for highly efficient tunable electromagnetic wave absorption , 2019, Journal of Alloys and Compounds.
[59] R. Che,et al. Hollow porous Fe2O3 microspheres wrapped by reduced graphene oxides with high-performance microwave absorption , 2019, Journal of Materials Chemistry C.
[60] F. Wen,et al. Direct large-scale fabrication of C-encapsulated B4C nanoparticles with tunable dielectric properties as excellent microwave absorbers , 2019, Carbon.
[61] Ying Huang,et al. Core-Shell CoNi@Graphitic Carbon Decorated on B,N-Codoped Hollow Carbon Polyhedrons toward Lightweight and High-Efficiency Microwave Attenuation. , 2019, ACS applied materials & interfaces.
[62] S. Feng,et al. Three-dimensional nitrogen-doped reduced graphene oxide aerogel decorated with Ni nanoparticles with tunable and unique microwave absorption , 2019, Carbon.
[63] F. Meng,et al. Wheat straw-derived magnetic carbon foams: In-situ preparation and tunable high-performance microwave absorption , 2019, Nano Research.
[64] N. Wang,et al. Core-shell FeCo@carbon nanoparticles encapsulated in polydopamine-derived carbon nanocages for efficient microwave absorption , 2019, Carbon.
[65] Luo Kong,et al. Powerful absorbing and lightweight electromagnetic shielding CNTs/RGO composite , 2019, Carbon.
[66] Zhichuan J. Xu,et al. Biomass-Derived Porous Carbon-Based Nanostructures for Microwave Absorption , 2019, Nano-micro letters.
[67] M. Zhang,et al. Green Approach to Conductive PEDOT:PSS Decorating Magnetic-Graphene to Recover Conductivity for Highly Efficient Absorption , 2018, ACS Sustainable Chemistry & Engineering.
[68] Jingwei Zhang,et al. Fabrication of TiN/Carbon nanofibers by electrospinning and their electromagnetic wave absorption properties , 2018 .
[69] Yanglong Hou,et al. A Versatile Route toward the Electromagnetic Functionalization of Metal-Organic Framework-Derived Three-Dimensional Nanoporous Carbon Composites. , 2018, ACS applied materials & interfaces.