560979
powder
~15 nm
562 m2/g
~22 nm
2.31 cm3/g pore volume
2230 °C (lit.)
>1600 °C (lit.)
battery manufacturing
O=[Si]=O
1S/O2Si/c1-3-2
VYPSYNLAJGMNEJ-UHFFFAOYSA-N
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This Item | 904406 | 904384 | 904414 |
---|---|---|---|
mp >1600 °C (lit.) | mp >1600 °C (lit.) | mp >1600 °C (lit.) | mp >1600 °C (lit.) |
cell window size ~15 nm | cell window size - | cell window size - | cell window size - |
surface area 562 m2/g | surface area - | surface area - | surface area - |
unit cell size ~22 nm | unit cell size - | unit cell size - | unit cell size - |
pore size 2.31 cm3/g pore volume | pore size - | pore size - | pore size - |
11 - Combustible Solids
nwg
Not applicable
Not applicable
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Mesoporous Materials include a range of high surface area porous silicates with applications in gas adsorption, drug delivery, diagnostics and catalysis.
Mesoporous Silica and their Applications
Mesoporous materials are formed by a self-assembly process from combined solutions of sol-gel precursors (e.g., metal alkoxides) and structure-directing amphiphiles, usually block-copolymers or surfactants.
Recent demand for electric and hybrid vehicles, coupled with a reduction in prices, has caused lithium-ion batteries (LIBs) to become an increasingly popular form of rechargeable battery technology.
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