化工学报 ›› 2008, Vol. 59 ›› Issue (5): 1325-1332.

• 材料化学工程与纳米技术 • 上一篇    下一篇

基于香豆胶的疏水改性阴离子聚电解质溶液性能

史学峰,吴文辉,宫瑞英,王建全   

  1. 北京理工大学材料科学与工程学院
  • 出版日期:2008-05-05 发布日期:2008-05-05

Solution properties of hydrophobically modified anion polyelectrolytes based on Fenugreek gum

SHI Xuefeng,WU Wenhui,GONG Ruiying,WANG Jianquan   

  • Online:2008-05-05 Published:2008-05-05

摘要:

将十二烷基(Dod)与十六烷基(Cet)以酯键方式分别引入经羧甲基化改性的香豆胶大分子骨架上,制备了基于香豆胶的疏水改性阴离子聚电解质衍生物(HmCmFG)。通过荧光探针芘的激发光谱、发射光谱以及紫外光谱研究了HmCmFG溶液中的疏水缔合行为,研究发现,此疏水缔合行为受到HmCmFG大分子上烷基链长与取代度以及溶液中小分子电解质NaCl的显著影响,增加烷基链长、提高烷基取代度或增大NaCl浓度均有利于溶液中疏水缔合微区的形成。采用黏度法研究了溶液中HmCmFG大分子与NaCl、表面活性剂十六烷基三甲基溴化铵(CTAB)及十二烷基硫酸钠(SDS)的相互作用。结果表明,Dod取代度小于5.7时,NaCl的加入以增强HmCmFG分子间缔合为主,溶液黏度增加,加入CTAB对于Dod取代度小于5.7时的溶液黏度值的影响高于SDS;Dod取代度为10.2或Cet取代度为6.3时,加入NaCl、CTAB或SDS后使HmCmFG分子内缔合占优势,溶液黏度降低。

关键词:

香豆胶, 疏水改性, 聚电解质, 溶液性能

Abstract:

Hydrophobically modified anion polyelectrolytes based on Fenugreek gum(HmCmFG)were prepared by fixation of dodecyl(Dod)or cetyl(Cet)chains onto carboxymethyl Fenugreek gum backbone via ester functions.Fluorescence excitation and emission spectra of probe pyrene and UV spectra were used to investigate the hydrophobically associating behavior of HmCmFG in solutions.The experiment data showed that hydrophobically associating behavior was significantly affected by the length and substitution degree of alkyl chains and concentration of low molecular electrolyte NaCl,the increase of which was in favor of the formation of hydrophobic microdomains.Viscometric experiments were carried out to study the interactions between HmCmFG and NaCl,〖HJ〗hexadecyl trimethyl ammonium bromide(CTAB)or sodium dodecyl sulfate(SDS).The addition of NaCl mainly strengthened intermolecular hydrophobic interactions for HmCmFG with the substitution degree of dodecyl lower than 5.7,leading to increasing viscosity of solutions.The effect of CTAB on the viscosity of solutions of HmCmFG with dodecyl substitution degree lower than 5.7 was greater than that of SDS.As for Dod 10.2 and Cet 6.3,the addition of NaCl,CTAB or SDS decreased solution viscosities by strengthening intra-molecular hydrophobic aggregation.

Key words:

香豆胶, 疏水改性, 聚电解质, 溶液性能