1 |
Duty cycle dependent chemical structure and wettability of RF pulsed plasma copolymers of acrylic acid and octafluorocyclobutane Muzammil I, Li YP, Li XY, Lei MK Applied Surface Science, 436, 411, 2018 |
2 |
Microphase separated hydroxide exchange membrane synthesis by a novel plasma copolymerization approach Zhang CX, Hu J, Wang XK, Toyoda H, Nagatsu M, Zhang XD, Meng YD Journal of Power Sources, 198, 112, 2012 |
3 |
Synthesis and characterization of poly(methyl methacrylate-butyl acrylate) by using glow-discharge electrolysis plasma Gao JZ, Li XF, Lu QF, Li Y, Ma DL, Yang W Polymer Bulletin, 68(1), 37, 2012 |
4 |
Structure of copolymer films created by plasma enhanced chemical vapor deposition Peri SR, Kim H, Akgun B, Enlow J, Jiang H, Bunning TJ, Li XF, Foster MD Polymer, 51(17), 3971, 2010 |
5 |
The growth and chemical structure of thin photonic films formed from plasma copolymerization. Part II. Effect of monomer feed location Jiang H, Grant JT, Eyink K, Tullis S, Enlow J, Bunning TJ Polymer, 46(19), 8178, 2005 |
6 |
The growth and chemical structure of thin photonic films formed from plasma copolymerization: I. Effect of monomer feed ratio Jiang H, Grant JT, Tullis S, Eyink K, Fleitz P, Bunning TJ Polymer, 45(25), 8475, 2004 |
7 |
Stabilization of chlorofluorocarbons (CFCs) by plasma copolymerization with hydrocarbon monomers Tsuji O, Minaguchi T, Nakano H Thin Solid Films, 390(1-2), 159, 2001 |
8 |
Surface Graft-Polymerization of Glycidyl Methacrylate Onto Polyethylene and the Adhesion with Epoxy-Resin Zhang JF, Kato K, Uyama Y, Ikada Y Journal of Polymer Science Part A: Polymer Chemistry, 33(15), 2629, 1995 |