[1]
J.Y. Yang. Research of superhigh molecular copolymerizd polyacrylamide, Northwestern Polytechnical University, 2002X.L. Chen, Synthesis of copolymerized anionic polyacrylamide used as displacement agent, Northwestern Polytechnical University, (2002)
DOI: 10.21629/jsee.2016.06.03
Google Scholar
[2]
W. Ding, H.Q. Zhu, T. Yu, "Synthesis of a new type of zwitterionic-comb-like polyacrylamide," Journal of Daqing Petroleum Institute, vol. 31 (1), pp.55-57, (2007)
Google Scholar
[3]
Y.P. Wang, J.H. Luo, R.Y. Bu, et al. "Analysis on Polymers of Temperature and Salt-resistant for Enhanced Oil Recovery," Chemical Industry and Engineering Progress, vol. 22(3), pp.271-274, (2003)
Google Scholar
[4]
K.J. Yang, W.Q. Su, J. Shen, "Discussing the Synthesis Craft of Low Molecular Weight Polyacrylamide," Contemporary Chemical Industry, vol. 35(1), pp.14-16, 2006,
Google Scholar
[5]
R.W. Guo, H.B. Ning; G.C. Qi, et al. "Progress of synthesis and characterization of hydrophobically–modified polyacrylamides prepared by micellar polymerization,". Chemical Industry and Engineering Progress, vol. 25(1), pp.25-30. (2006)
Google Scholar
[6]
R.L. Shogren, J.L. Willett, A. Biswas, "HRP-mediated synthesis of starch–polyacrylamide graft copolymers," Carbohydrate Polymers. Vol. 75, p.189–191, (2009)
DOI: 10.1016/j.carbpol.2008.07.004
Google Scholar
[7]
Q.W. Tang, J.H. Wu X.M. Sun et al. "Polyacrylamide-controlled growth of centimeter-scaled polyaniline fibers," Polymer. Vol. 75, p.1–4, (2009)
Google Scholar
[8]
H. Lei, H.S. Lu, J.B. Luo, et al. "Preparation of α-alumina-g-polyacrylamide composite abrasive and chemical mechanical polishing behavior," Thin Solid Films, vol. 516, p.3005–3008, (2008)
DOI: 10.1016/j.tsf.2007.11.050
Google Scholar