MSE PRO High Purity (>99.9 wt%) Graphitized Hydroxylate Multi-Walled Carbon Nanotube, 25g
MSE PRO™ High Purity (>99.9 wt%) Graphitized Hydroxylate Multi-Walled Carbon Nanotube, 25g
- Package Size: 25 g/bottle
Graphitized Hydroxylate Multi-Walled Carbon Nanotubes (MWCNT) are purified under inert gas for about 20 hours thermal treatment at 2800℃. It has a high graphite crystallization, good electrical conductivity and antioxidant properties.
Graphitized hydroxylate multi-walled carbon nanotubes can be used in various fields including additives in polymers, catalysts, electron field emitters for cathode ray lighting elements, flat panel display, gas-discharge tubes in telecom networks, electromagnetic-wave absorption and shielding, energy conversion, lithium-battery anodes, hydrogen storage, nanolithography, nanoelectrodes, drug delivery sensors, reinforcements in composites, supercapacitor.
Keep dry at room temperature.
MSE Supplies offers a variety of CNT products, include CNT powder, CNT paste, CNT array, CNT fiber, CNT film, CNT film adhesive tape, CNT conductive heating coating, CNT thermal radiation coating, CNT transparent static conductive coating, CNT conductive fillers, CNT functional masterbatches, CNT epoxy composite, etc. Please contact us for more information.
|Outer Diameter (nm)||8-15||10-20||20-30||30-50||>50|
|Inner Diameter (nm)||3-5||5-10||5-10||5-12||5-15|
|-OH Content (wt%)||1.85||1.53||0.88||0.53||0.36|
|Specific Surface Area (m2/g)||>117||>100||>55||>30||>20|
|True Density (g/cm3)||~2.1|
|Electrical Conductivity (s/cm)||>100|
 Xin-Long Ling, Yi-Zhe Wei, Li-Ming Zou, Su Xu, Preparation and characterization of hydroxylated multi-walled carbon nanotubes, Colloids and Surfaces A: Physicochemical and Engineering Aspects, Volume 421, 2013, Pages 9-15.
 Mahdiyar Shahbazi, Ghadir Rajabzadeh, Shahnaz Sotoodeh, Functional characteristics, wettability properties and cytotoxic effect of starch film incorporated with multi-walled and hydroxylated multi-walled carbon nanotubes, International Journal of Biological Macromolecules, Volume 104, Part A, 2017, Pages 597-605.
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