电子束辐照接枝改性聚乳酸及其降解性能的研究
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四川省科技支撑项目(2010GZ0146);四川省国际合作项目(2010HH0011)


Electron beam induced graft polymerization of NVP on PLA and its degradation behaviors
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    摘要:

    为改善聚乳酸(Polylactic acid,PLA)材料的亲水性,采用电子束辐照接枝亲水性单体N-乙烯基吡咯烷酮(N-vinyl pyrrolidone,NVP)对其进行表面改性。研究了吸收剂量和反应介质中酸浓度对PLA接枝率和分子量影响,并对PLA-g-PVP的降解性能进行了考察。结果表明,接枝率随着辐照剂量的增加而提高;当反应介质中酸浓度为0.07mol/L时PLA的分子量达到极大值;接枝共聚物(PLA-g-PVP)的吸水率和降解速度较PLA明显提高。接枝率为12.1%的PLA-g-PVP共聚物降解48h后吸水率为11.5%,是PLA的16.4倍;接枝率为8.8%的共聚物168h分子量损失率为82.6%,是PLA的2.4倍。

    Abstract:

    For improving the hydrophilicity and cell compatibility of PLA, electron beam was used to induce grafting of NVP on PLA in different conditions (irradiation dose, ethylic acid concentration). PLA-g-PVP copolymers with different graft ratio were attained. The degradation behaviors of the materials were investigated by mass loss, molecule weight loss and water intake measurement. The experimental results showed that the hydrophilicity and degradation rate of the grafted materials were improved with the increase of the graft ratio. Compared with PLA, the PLA-g-PVP copolymers showed higher hydrophilicity and faster degradation rate due to the incorporation of hydrophilic PVP units. These PLA-g-PVP copolymers can be expected to apply in tissue engineering for their great potentials in having good cell affinity to be cell scaffold materials.

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王静霞,彭朝荣.电子束辐照接枝改性聚乳酸及其降解性能的研究[J].精细化工,2011,28(11):

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  • 收稿日期:2011-07-21
  • 最后修改日期:2011-08-04
  • 录用日期:2011-09-13
  • 在线发布日期: 2011-10-25
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