Yu et al., 2023 - Google Patents
Metal–organic framework‐manipulated dielectric genes inside silicon carbonitride toward tunable electromagnetic wave absorptionYu et al., 2023
View PDF- Document ID
- 13915380954776838563
- Author
- Yu G
- Shao G
- Xu R
- Chen Y
- Zhu X
- Huang X
- Publication year
- Publication venue
- Small
External Links
Snippet
Heterointerface engineering for different identifiable length scales has emerged as a key research area for obtaining materials capable of high‐performance electromagnetic wave absorption; however, achieving controllable architectural and compositional complexity in …
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Yu et al. | Metal–organic framework‐manipulated dielectric genes inside silicon carbonitride toward tunable electromagnetic wave absorption | |
Huang et al. | Harnessing Pseudo‐Jahn− Teller Disordering of Monoclinic Birnessite for Excited Interfacial Polarization and Local Magnetic Domains | |
Huang et al. | An efficient Co/C microwave absorber with tunable Co nanoparticles derived from a ZnCo bimetallic zeolitic imidazolate framework | |
Du et al. | Electromagnetic wave absorbing properties of glucose‐derived carbon‐rich SiOC ceramics annealed at different temperatures | |
Wu et al. | Dual magnetic particles modified carbon nanosheets in CoFe/Co@ NC heterostructure for efficient electromagnetic synergy | |
Kong et al. | High‐Temperature Electromagnetic Wave Absorption Properties of ZnO/ZrSiO 4 Composite Ceramics | |
Xue et al. | Crystallization Mechanism of CVD Si3N4–Si CN Composite Ceramics Annealed in N2 Atmosphere and Their Excellent EMW Absorption Properties | |
Jiang et al. | Multifunctional three-dimensional porous MOFs derived Fe/C/carbon foam for microwave absorption, thermal insulation and infrared stealth | |
Su et al. | Preparation and Dielectric Property of Al and N Co‐Doped SiC Powder by Combustion Synthesis | |
Lv et al. | Low‐Temperature Sinterable (1− x) Ba 3 (VO 4) 2–x LiMg 0.9 Zn 0.1 PO 4 Microwave Dielectric Ceramics | |
Xue et al. | Enhanced microwave absorbing properties of Y2O3 modified PDC SiCN ceramics with heterogeneous amorphous interface | |
Zhang et al. | Regulation dipole moments of N‐doped graphene coordinated with FePc toward highly efficient microwave absorption performance in C band | |
Yan et al. | Facile constructing Ti3C2Tx/TiO2@ C heterostructures for excellent microwave absorption properties | |
Wu et al. | Hierarchical assembly of ternary MOF‐derived sandwich composites for high‐efficiency tunable electromagnetic wave absorption | |
Qiu et al. | Confined in‐situ encapsulation of Co/C composites with increased heterogeneous interface polarization for enhanced electromagnetic performance | |
Zhou et al. | Polymer‐derived Fe x Si y/SiC@ SiOC ceramic nanocomposites with tunable microwave absorption behavior | |
Sun et al. | Rational design of a core–shelled Ti3AlC2@ La2Zr2O7 composite for high-temperature broadband microwave absorption | |
Xing et al. | MoS2 decorated on 1D MoS2@ Co/NC@ CF Hierarchical fibrous membranes for enhanced microwave absorption | |
Xing et al. | Fabrication of ZnS/C microsphere composites with enhanced electromagnetic wave absorption properties | |
Luo et al. | Multidimensional Engineering Induced Interfacial Polarization by in‐Situ Confined Growth of MoS2 Nanosheets for Enhanced Microwave Absorption | |
Han et al. | ZIF-derived Co nanoparticles embedded in pumpkin seedlike, hollow N-doped carbon structures for efficient microwave absorption | |
Si et al. | Growth behavior of anisotropic monometallic MOFs derivatives with the high absorbing and thermal properties | |
Xu et al. | Polymer-derived silicon oxycarbonitride bowls with hollow structures and hetero-nanodomains for electromagnetic wave absorption | |
Zhang et al. | High‐efficiency electromagnetic absorption of HfC–SiCf ceramics with a 3D reticular structure | |
Xia et al. | Microwave absorbing performance of reduced graphene oxide@ alumina fabricated by atomic layer deposition method |