Chemistry Reference
In-Depth Information
23. Chauhan GS, Mahajan S, Guleria KL (2000) Polymers from renewable resources: sorption of
Cu 2+ ions by cellulose graft copolymers. Desalination 130:85-88
24. Hebeish A, Guthrie JT (1981) The chemistry and technology of cellulosic copolymers.
Springer, New York, NY
25. Samal BB, Sahu S, Chinara BB, Nanda S, Otta PK, Mohapatro LM, Mohanty TR, Ray AR,
Singh KC (1988) Grafting of vinyl monomers onto sisal fiber in aqueous solution. J Polym Sci
Part A Polym Chem 26:3159-3166
26. Misra M, Mohanty AK, Singh BC (1987) A study on grafting of methyl methacrylate onto
jute fiber (S 2 O 2 8 -thiourea redox system). J Appl Polym Sci 33:2809-2819
27. Huque MM, Habibuddowla MD, Mahmood AJ, Mian AJ (1980) Graft-copolymerization onto
jute fiber-ceric ion-initiated graft-copolymerization of methyl-methacrylate. J Polym Sci
Polym Chem Ed 18:1447-1458
28. Das HK, Nayak NC, Singh BC (1991) Effect of toluene on the kinetics of ce(iv)-ion-initiated
grafting of methyl-methacrylate onto chemically modified jute fibers. J Macromol Sci Chem
A28:297-309
29. Xie J, Hsieh YL (2003) Thermosensitive poly(n-isopropylacrylamide) hydrogels bonded on
cellulose supports. J Appl Polym Sci 89:999-1006
30. Ifuku S, Kadla J (2008) Preparation of a thermosensitive highly regioselective cellulose/n-
isopropylacrylamide copolymer through atom transfer radical polymerization. Biomacro-
molecules 9:3308-3313
31. Wang D, Tan J, Kang H, Ma L, Jin X, Liu R, Huang Y (2011) Synthesis, self-assembly and
drug release behaviors of pH-responsive copolymers ethyl cellulose-graft-PDEAEMA
through ATRP. Carbohydr Polym 84:195-202
32. Lee SB, Koepsel RR, Morley SW, Matyjaszewski K, Sun Y, Russell AJ (2004) Permanent,
nonleaching antibacterial surfaces. 1. Synthesis by atom transfer radical polymerization.
Biomacromolecules 5:877-882
33. Mcdowall DJ, Gupta BS, Stannett VT (1984) Grafting of vinyl monomers to cellulose by
ceric ion inhibition. Prog Polym Sci 10:1-50
34. Saikia CN, Ali F (1999) Graft copolymerization of methyl methacrylate onto high a-cellulose
pulp extracted from Hibiscus sabdariffa and Gmelina arborea. Bioresour Technol 68:165-171
35. Roy D, Guthrie JT, Perrier S (2005) Graft polymerization: grafting poly(styrene) from
cellulose via reversible addition-fragmentation chain transfer (RAFT) polymerization.
Macromolecules 38:10363-10372
36. Zhang LM, Chen LQ (2002) Water-soluble grafted polysaccharides containing sulfobetaine
groups: Synthesis and characterization of graft copolymers of hydroxyethyl cellulose with 3-
dimethyl(methacryloyloxyethyl)ammonium propane
sulfonate.
J Appl Polym Sci
83:2755-2761
37. Tsubokawa N, Iida T, Takayama T (2000) Modification of cellulose powder surface by
grafting of polymers with controlled molecular weight and narrow molecular weight distri-
bution. J Appl Polym Sci 75:515-522
38. Narayan R, Biermann CJ, Hunt MO, Horn DP (1989) In adhesives from renewable resources.
American Chemical Society, Washington, DC
39. Nishioka N, Minami K, Kosai K (1983) Homogeneous graft copolymerization of vinyl
monomers onto cellulose in a dimethyl sulfoxide-paraformaldehyde solvent system III.
Methyl acrylate. Polym J 15:591-596
40. Nishioka N, Matsumoto K, Kosai K (1983) Homogeneous graft copolymerization of vinyl
monomers onto cellulose in a dimethyl sulfoxide-paraformaldehyde solvent system II.
Characterization of graft copolymers. Polym J 15:153-158
41. Nishioka N, Kosai K (1981) Homogeneous graft copolymerization of vinyl monomers onto
cellulose in a dimethyl sulfoxide-paraformaldehyde solvent system I. Acrylonitrile and
methyl methacrylate. Polym J 13:1125-1133
42. Abdel-Razik EA (1997) Aspects of thermal graft copolymerization of methyl methacrylate
onto ethyl cellulose in homogeneous media. Polym Plast Technol Eng 36:891-903
Search WWH ::




Custom Search