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Electrospun nanoscale bent fibrous membrane with controllable porous structure and hydrophilic modification for high-efficiency oil-water separation, particle/bacterial filtration and antibacterial applications - ScienceDirect

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Electrospun nanoscale bent fibrous membrane with controllable porous structure and hydrophilic modification for high-efficiency oil-water separation, particle/bacterial filtration and antibacterial applications - ScienceDirect

Electrospun nanoscale bent fibrous membrane with controllable porous  structure and hydrophilic modification for high-efficiency oil-water  separation, particle/bacterial filtration and antibacterial applications -  ScienceDirectElectrospun nanoscale bent fibrous membrane with controllable porous structure and hydrophilic modification for high-efficiency oil-water separation, particle/bacterial filtration and antibacterial applications - ScienceDirect,Electrospun nanoscale bent fibrous membrane with controllable porous  structure and hydrophilic modification for high-efficiency oil-water  separation, particle/bacterial filtration and antibacterial applications -  ScienceDirectElectrospun nanoscale bent fibrous membrane with controllable porous structure and hydrophilic modification for high-efficiency oil-water separation, particle/bacterial filtration and antibacterial applications - ScienceDirect,Locally Enhanced Electric Field Treatment of E. coli: TEM, FT-IR and Raman  Spectrometry StudyLocally Enhanced Electric Field Treatment of E. coli: TEM, FT-IR and Raman Spectrometry Study,Electrospun nanoscale bent fibrous membrane with controllable porous  structure and hydrophilic modification for high-efficiency oil-water  separation, particle/bacterial filtration and antibacterial applications -  ScienceDirectElectrospun nanoscale bent fibrous membrane with controllable porous structure and hydrophilic modification for high-efficiency oil-water separation, particle/bacterial filtration and antibacterial applications - ScienceDirect,Facile synthesis of O-doped carbon nitride nanofibers for two-step  single-electron oxygen reduction to H 2 O 2 - New Journal of Chemistry (RSC  Publishing) DOI:10.1039/D3NJ03170EFacile synthesis of O-doped carbon nitride nanofibers for two-step single-electron oxygen reduction to H 2 O 2 - New Journal of Chemistry (RSC Publishing) DOI:10.1039/D3NJ03170E,

 

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