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Robust–Soft” Anisotropic Nanofibrillated Cellulose Aerogels with Superior Mechanical, Flame-Retardant, and Thermal Insulating Properties
Ultralight Programmable Bioinspired Aerogels with an Integrated Multifunctional Surface for Self-Cleaning, Oil Absorption, and Thermal Insulation via Coassembly
Sustainability, Free Full-Text
Team develops see-through aerogel made from wood that better insulates double-paned windows
Biomass vs inorganic and plastic-based aerogels: Structural design, functional tailoring, resource-efficient applications and sustainability analysis - ScienceDirect
Nanostructurally Controllable Strong Wood Aerogel toward Efficient Thermal Insulation
Ultrastrong lightweight nanocellulose-based composite aerogels with robust superhydrophobicity and durable thermal insulation under extremely environment - ScienceDirect
Multiscale design of hypocrystalline ceramic nanofibrous aerogel a
Nanostructurally Controllable Strong Wood Aerogel toward Efficient Thermal Insulation
Aerogel integrated wood provides better insulation than existing plastic-based materials
New aerogel maintains functionality, superelasticity at extreme temperatures
Carbon footprint of thermal insulation materials needed to achieve the