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Elastic Aerogels of Cellulose Nanofibers@Metal–Organic Frameworks for Thermal Insulation and Fire Retardancy
by
Zhou, Shengyang
, Marcus Vinícius Tavares da Costa
, Bergström, Lennart
, Strømme, Maria
, Xu, Chao
, Apostolopoulou-Kalkavoura, Varvara
in
Aerogels
/ Cellular communication
/ Cellular structure
/ Cellulose
/ Compressive strength
/ Crosslinking
/ Fire resistance
/ Fire resistant materials
/ Flame retardants
/ Insulation
/ Metal-organic frameworks
/ Microporosity
/ Moisture resistance
/ Nanocomposites
/ Nanoengineering
/ Nanofibers
/ Porosity
/ Recoverable strain
/ Strain
/ Structural hierarchy
/ Superelasticity
/ Thermal conductivity
/ Thermal insulation
/ Thermal stability
2020
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Elastic Aerogels of Cellulose Nanofibers@Metal–Organic Frameworks for Thermal Insulation and Fire Retardancy
by
Zhou, Shengyang
, Marcus Vinícius Tavares da Costa
, Bergström, Lennart
, Strømme, Maria
, Xu, Chao
, Apostolopoulou-Kalkavoura, Varvara
in
Aerogels
/ Cellular communication
/ Cellular structure
/ Cellulose
/ Compressive strength
/ Crosslinking
/ Fire resistance
/ Fire resistant materials
/ Flame retardants
/ Insulation
/ Metal-organic frameworks
/ Microporosity
/ Moisture resistance
/ Nanocomposites
/ Nanoengineering
/ Nanofibers
/ Porosity
/ Recoverable strain
/ Strain
/ Structural hierarchy
/ Superelasticity
/ Thermal conductivity
/ Thermal insulation
/ Thermal stability
2020
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Do you wish to request the book?
Elastic Aerogels of Cellulose Nanofibers@Metal–Organic Frameworks for Thermal Insulation and Fire Retardancy
by
Zhou, Shengyang
, Marcus Vinícius Tavares da Costa
, Bergström, Lennart
, Strømme, Maria
, Xu, Chao
, Apostolopoulou-Kalkavoura, Varvara
in
Aerogels
/ Cellular communication
/ Cellular structure
/ Cellulose
/ Compressive strength
/ Crosslinking
/ Fire resistance
/ Fire resistant materials
/ Flame retardants
/ Insulation
/ Metal-organic frameworks
/ Microporosity
/ Moisture resistance
/ Nanocomposites
/ Nanoengineering
/ Nanofibers
/ Porosity
/ Recoverable strain
/ Strain
/ Structural hierarchy
/ Superelasticity
/ Thermal conductivity
/ Thermal insulation
/ Thermal stability
2020
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Elastic Aerogels of Cellulose Nanofibers@Metal–Organic Frameworks for Thermal Insulation and Fire Retardancy
Journal Article
Elastic Aerogels of Cellulose Nanofibers@Metal–Organic Frameworks for Thermal Insulation and Fire Retardancy
2020
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Overview
HighlightsThe study reveals the great potential of metal–organic framework (MOF)-based nanocomposites in thermal insulation and fire retardancy applications.A nanoengineering approach was developed to process MOFs into freestanding, mechanically strong, and elastic aerogels, which may boost the fundamental research and practical applications of MOFs in these areas.
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