Simultaneous improvement in thermal conductivity and flame retardancy of epoxy resin via constructing 3D BNNS skeleton with assistance of ammonium polyphosphate
Author:
Funder
Natural Science Foundation of Henan Province
National Natural Science Foundation of China
Publisher
Elsevier BV
Subject
Industrial and Manufacturing Engineering,General Chemical Engineering,Environmental Chemistry,General Chemistry
Reference53 articles.
1. Emerging challenges and materials for thermal management of electronics;Moore;Mater. Today,2014
2. Experimental observation of high thermal conductivity in boron arsenide;Kang;Science,2018
3. Breaking through bottlenecks for thermally conductive polymer composites: a perspective for intrinsic thermal conductivity, interfacial thermal resistance and theoretics;Gu;Nano-Micro Lett.,2021
4. Transparent and stretchable electromagnetic interference shielding film with fence-like aligned silver nanowire conductive network;Feng;Small Methods,2023
5. Flexible, highly thermally conductive and electrically insulating phase change materials for advanced thermal management of 5G base stations and thermoelectric generators;Lin;Nano-Micro Lett.,2023
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1. Mechanical properties of composite materials with low-covered polyrotaxane and plasma-surface-modified hexagonal boron nitride;Chemical Physics;2024-10
2. Controllable Self‐Assembly of Carbon Nanotubes on Ammonium Polyphosphate as a Game‐Changer for Flame Retardancy and Thermal Conductivity in Epoxy Resin;Macromolecular Rapid Communications;2024-08-13
3. Two birds with one stone: A “needle-like” structure constructed on multifunctional PET fabric surface for flame retardancy and electromagnetic interference shielding;Chemical Engineering Journal;2024-06
4. An in situ strategy to produce high-performance composite thermal adhesives with excellent bonding, thermal transfer and adjustable electrical performance based on a designer hyperbranched epoxy copolymer;Polymer;2024-06
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