二步水解法制备凝胶渗透色谱用聚甲基丙烯酸标样
Preparation of Monodispersed PMAA for GPC Calibration Standards by Two-Step Hydrolysis
摘要: 采用二步水解法水解单分散GPC用聚甲基丙烯酸甲酯标样,核磁共振测得其水解率达99%,制得的聚甲基丙烯酸钠经酸化析出后得到聚甲基丙烯酸标样。该聚甲基丙烯酸标样以磷酸盐缓冲水溶液为流动相,采用PLaquagel-OH mixed-H柱串联测得的GPC色谱峰峰形对称,半峰宽窄,分散系数均小于1.3,具有很好的单分散性。粘度法测得其Mη与通过聚甲基丙烯酸甲酯标样参数计算得到的Mη'平均相对误差小于10%,表明水解对聚甲基丙烯酸甲酯主链的聚合度无明显影响。因此,可以用聚甲基丙烯酸甲酯标样的分子量计算得到相应聚甲基丙烯酸标样的分子量。
Abstract: Hydrolyzed monodisperse polymethyl methacrylate for GPC calibration standards by two-step hydrolysis, the degree of hydrolysis reached 99% measured by nuclear magnetic resonance analysis (NMR).The obtained monodisperse polymethylacrylic acid-Na transformed to polymethylacrylic acid by acidification. The polymethylacrylic acid with phosphate buffer solution as mobile phase, used PL aquagel-OH mixed-H columns in series, GPC figures had symmetrical peak shape, narrow half-peak, dispersity were all less than 1.3. Viscosity average molecular weight (Mη') of polymethylacrylic acid calculated by hydrolysis formula compared to the actual results measured by viscosity meas-uring method (Mη), the average relative error were less than 10%, which indicated the hydrolysis did not effect on the degree of polymerization of the main chain. Therefore, we can calculate molecular weight of polymethylacrylic acid from the corresponding molecular weight of polymethyl methacrylate.
文章引用:郭丽萍, 徐丹, 杜小弟, 张安富, 雷家珩. 二步水解法制备凝胶渗透色谱用聚甲基丙烯酸标样[J]. 分析化学进展, 2012, 2(1): 1-5. http://dx.doi.org/10.12677/aac.2012.21001

参考文献

[1] M. A. A. Razali, Z. Ahmad, M. S. B. Ahmad, et al. Treatment of pulp and paper mill wastewater with various molecular weight of polyDADMAC induced flocculation. Chemical Engineering Journal, 2011, 166(2): 529-535.
[2] H. U. Sahinkaya, A. Ozkan. Investigation of shear flocculation behaviors for cartilage tissue engineering. Acta Biomaterialia, 2011, 7(4): 1485-1.
[3] V. S. Ramachandran. Concrete anmixtures handbook Properties,Science, and Technology. Ottawa: Noyes Publications, 1996.
[4] K. Andreas, R. Zehbe, M. Kazubek, et al. Biodegradable insulin-loaded PLGA microspheres fabricated by three different emulsification techniques: Investigation 495.
[5] 韩冬, 叶美玲, 施良和. 水溶性凝胶色谱中的非体积排除效应[J]. 色谱, 1995, 13(6): 432-436.
[6] H. Zhang, H. Ishikawa, M. Ohata, et al. Anionic polymerization of alkyl methacrylates and molecular weight distributions of the resulting polymers. Polymer, 1992, 33(4): 828-833.
[7] H. Mori, A. H. E. Müller. New polymeric architectures with (meth) acrylic acid segments. Progress in Polymer Science, 2003, 28(10): 1403-1439.
[8] J. Mykytiuk, S. P. Armes and N. C. Billingham. Group-transfer polymerization of benzyl methacrylate: A convenient method for synthesis of near-monodisperse poly(methacrylic acid)s. Polymer Bulletin, 1992, 29(1): 139-145.
[9] S. Kawaguchi, T. Takahashi, H. Tajima, et al. Preparation, characterization, and dissociation properties of poly (acrylic acid) and poly(methacrylic acid) with narrow molecular weight distribution. Polymer Journal, 1996, 28(9): 735-741.
[10] R. Erhardt, M. Zhang, A. B. Ker, et al. Amphiphilic Janus micelles with polystyrene and poly(methacrylic acid) hemispheres. Journal of the American Chemical Society, 2003, 125(11): 3260- 3267.
[11] N. M. Wiederhorn, A. R. Brown. Viscosity-molecular weight re- lation for polymethacrylic acid in methanol. Journal of Polymer Science, 1952, 8(6): 651-656.
[12] 杜小弟, 张安富, 雷家珩等. 聚丙烯酸的凝胶渗透色谱分离及相对分子质量测定[J]. 分析测试学报, 2011, 30(2): 167- 170.