Review Article

Carbon Nanotube and Graphene Based Polyamide Electrospun Nanocomposites: A Review

Table 1

Polyamide electrospun nanofibres reinforced with 1D and 2D carbon.

NanofillerFunctionalising agentsPolymer matrixSolventReference

P-MWCNTsPA66FA[32]
O-MWCNTsH2SO4/HNO3PA66FA[32]
A-MWCNTsEDAC/DMAPA66FA[31]
O-MWCNTsNot specifiedPA66FA/DCM[35, 39]
O-SWCNTsH2SO4/HNO3PA6FA[40]
P-MWCNTsPA6FA[41]
P-CNTsPA6HFIP[42]
MWCNTs-OHKMnO4 in the presence of a phase transfer catalyst/dispersed in DMFPA66FA[43]
O-MWCNTsHNO3/HCl dispersed in DMFPA11FA/DCM[44]
A-MWCNTsSOCl2/EDAPA66FA[34, 45]
O-MWCNTsH2SO4/HNO3PA6HFIP[46]
O-MWCNTsHNO3/HCl dispersed in Triton X-100PA610HFIP[47]
O-MWCNTsHNO3/HCl dispersed in DMF or Triton X-100 and sodium dodecyl sulfatePA66FA[48]
P-MWCNTsDispersed in Triton X-100PA6HFIP[49]
A-MWCNTsSOCl2/EDAPA6FA[50]
P-MWCNTsPA6FA[50]
O-MWCNTsH2SO4/HNO3PA6FA[51]
Ac-MWCNTsFriedel-Crafts acylationPA6FA[52]
P-MWCNTsPA6FA[52]
O-MWCNTsCommercially obtainedPA6HFIP[53]
O-MWCNTsCommercially obtainedPA6Cresol/FA[54]
RGOHydrazinePA66FA[55]
NGOOxoammonium saltsPA6HFIP[41, 56]
RGOHydrazinePA66FA/DCM[33, 57]
RGOHydrazinePA66FA[57]
GnPsCommercially obtainedPA6HFIP[58]
GOHummers methodPA66FA[32]
AGeEDAC/DMAPA66FA[31]
RGOHexamethylentetraminePA66FA[32]
TiO2-RGOHydrothermal methodPA6FA/AA[59]
RGOHydrothermal methodPA6FA/AA[60]
GOHummers and Offeman’s methodPA6FA[61]
RGOHydroiodic acidPA6FA[62]
BSA-GOElectrostatic self-assemblyPA6FA[63]