bellvei.cat

Synthesis of material that absorbs electromagnetic waves in the 6G

4.8 (485) · $ 5.99 · In stock

A research team led by Dr. Youn-kyoung Baek and Dr. Jung-goo Lee succeeded in developing the world
A research team led by Dr. Youn-kyoung Baek and Dr. Jung-goo Lee succeeded in developing the world's first technology to consecutively manufacture epsilon iron oxide that can absorb millimeter wave with a high coercive force equivalent to that of neodymium (Nd) magnets. The researchers are from the Department of Magnetic Materials in Powder Materials Division at the Korea Institute of Materials Science (KIMS), a research institute under the Ministry of Science and ICT.

Recent advances in construction strategies and multifunctional properties of flexible electromagnetic wave absorbing materials - ScienceDirect

Microwave devices using flexible materials.

Multifunctional graphene/carbon fiber aerogels toward compatible electromagnetic wave absorption and shielding in gigahertz and terahertz bands with optimized radar cross section - ScienceDirect

a Schematic diagram of the preparation course and b electromagnetic

Molecules, Free Full-Text

PDF) A Novel Strategy in Electromagnetic Wave Absorbing and Shielding Materials Design: Multi‐Responsive Field Effect

Intercalation as a versatile tool for fabrication, property tuning, and phase transitions in 2D materials

Self-Assembled Ni0.85Se/NiSe@MoSe2 Network with Tubular and Core–Sheath Structures toward Adjustable Electromagnetic Wave Absorption Properties

Recent progress in carbon-based materials and loss mechanisms for electromagnetic wave absorption - ScienceDirect

Sensors, Free Full-Text

Metal Nanoparticles‐Enhanced Biosensors: Synthesis, Design and Applications in Fluorescence Enhancement and Surface‐enhanced Raman Scattering - Yaraki - 2020 - Chemistry – An Asian Journal - Wiley Online Library

Recent progress in carbon-based materials and loss mechanisms for electromagnetic wave absorption - ScienceDirect

Raman enhancement induced by exciton hybridization in molecules and 2D materials

PDF) Achieving Ultra-Wideband and Elevated Temperature Electromagnetic Wave Absorption via Constructing Lightweight Porous Rigid Structure

Nanomaterials, Free Full-Text