TY - GEN
T1 - Development of multiple-jet electrospinning technology
AU - Fang, Dufei
AU - Chang, Charles
AU - Hsiao, Benjamin S.
AU - Chu, Benjamin
PY - 2006
Y1 - 2006
N2 - We have successfully developed a unique multiple-jet electrospinning technology at STAR, Inc. and Stony Brook University. The development of this technology was primarily accomplished by the incorporation of secondary electrodes to isolate the electric field distribution of the primary electrode spinnerets, the design of an individual fluid distribution system and the optimization of system design using the finite element analysis method, in combination with experimental tests. The key technological advance permits the small-scale mass fabrication of membranes with composite nanofiber/nanoparticle hybrid morphology, tailor-designed composition variations, and 3D pattern formation from polymer solutions.
AB - We have successfully developed a unique multiple-jet electrospinning technology at STAR, Inc. and Stony Brook University. The development of this technology was primarily accomplished by the incorporation of secondary electrodes to isolate the electric field distribution of the primary electrode spinnerets, the design of an individual fluid distribution system and the optimization of system design using the finite element analysis method, in combination with experimental tests. The key technological advance permits the small-scale mass fabrication of membranes with composite nanofiber/nanoparticle hybrid morphology, tailor-designed composition variations, and 3D pattern formation from polymer solutions.
UR - https://www.scopus.com/pages/publications/36749055801
U2 - 10.1021/bk-2006-0918.ch007
DO - 10.1021/bk-2006-0918.ch007
M3 - Conference contribution
AN - SCOPUS:36749055801
SN - 0841239193
SN - 9780841239197
T3 - ACS Symposium Series
SP - 91
EP - 105
BT - Polymeric Nanofibers
PB - American Chemical Society
ER -