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Preparation of monomer of degradable biomaterial poly(L-lactide) 被引量:2

Preparation of monomer of degradable biomaterial poly(L-lactide)
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摘要 L-lactide was prepared from L-lactic acid with stannous octoate as the catalyst. The effects of reaction temperature and pressure on the ingredient of crude lactide were investigated. The results show that the mass fraction of meso-lactide increases with the increasing reaction temperature. Crude lactide containing 85.4% L-lactide is obtained when the reaction temperature is 200 ℃. High purity of L-lactide with a yield of 40.6 % is obtained by synthetic purifying method. The properties of L-lactide are characterized by optical purity, infrared spectrum and gas chromatogram/mass spectrum. The L-lactide samples purified by recrystallization and synthetic purifying methods are polymerized with the catalyst of stannous octoate, and the corresponding viscosity average relative molecular masses of poly(L-lactide) are 2.85 × 105 and 5.05 × 105 , respectively. This indicates that the optical purity of Llactide has great influence on the relative molecular mass of poly(L-lactide). L-lactide was prepared from L-lactic acid with stannous octoate as the catalyst. The effects of reaction temperature and pressure on the ingredient of crude lactide were investigated. The results show that the mass fraction of meso-lactide increases with the increasing reaction temperature. Crude lactide containing 85.4% L-lactide is obtained when the reaction temperature is 200℃. High purity of L-lactide with a yield of 40.6% is obtained by synthetic purifying method. The properties of L-lactide are characterized by optical purity, infrared spectrum and gas chromatogram/mass spectrum. The L-lactide samples purified by recrystallization and synthetic purifying methods are polymerized with the catalyst of stannous octoate, and the corresponding viscosity average relative molecular masses of poly(L-lactide) are 2.85×10~5 and 5.05×10~5, respectively. This indicates that the optical purity of L-lactide has great influence on the relative molecular mass of poly(L-lactide).
出处 《Journal of Central South University of Technology》 2005年第3期246-250,共5页 中南工业大学学报(英文版)
基金 Project(50174059)supportedbytheNationalNaturalScienceFoundationofChina
关键词 LACTIDE POLYLACTIDE purification POLYMERIZATION 丙交酯 聚交酯 提纯 聚合作用
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  • 2周智华,阮建明,邹俭鹏,周忠诚,申雄军.Bioactivity of bioresorbable composite based on bioactive glass and poly-L-lactide[J].中国有色金属学会会刊:英文版,2007,17(2):394-399. 被引量:5
  • 3王华林,戴静,翟林峰,左金平.可降解聚乳酸/骨粉杂化材料的制备与降解性能[J].高分子材料科学与工程,2007,23(3):167-170. 被引量:6
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  • 5Cung A N, Eric A, Gregoire S, et al. Synthesis of a novel fluorescent poly(D,L-lactide) end-capped with 1-pyrenebutanol used for the preparation of nanoparticles[J]. European Journal of Pharmaceutical Sciences, 2003, 20(2): 217-222.
  • 6Hyung W K, Chung W C, Young B K, et al. Preparation and hydrolytic degradation of semi-interpenetrating networks of poly(3-hydroxyundecenoate) and poly(lactide-co-glycolide)[J]. International Journal of Biological Macromolecules, 2005, 37(5): 221-226.
  • 7XIAO Yu-mei, LI Dong-xiao, FAN Hong-song, et al. Preparation of nano-HA/PLA composite by modified-PLA for controlling the growth of HA crystals[J]. Materials Letters, 2007, 61(1): 59-62.
  • 8LI Ya-jun, RUAN Jian-ming. Study on the biodegradation of poly (d,l-lactide)/hydroxyapatite porous composite[J]. Journal of Central South University of Technology: Natural Science, 2007, 38(3): 433-437.
  • 9Shim W S, Kim J H, Park H, et al. Biodegradability and biocompatibility of a pH- and thermo-sensitive hydrogel formed from a sulfonamide-modified poly(ε-caprolactone-co-lactide)- poly(ethylene glycol)-poly(ε-caprolactone-co-lactide) block copolymer[J]. Biomaterials, 2006, 27(30): 5178-5185.
  • 10LI Xiao-ming, FENG Qing-ling, CUI Fu-zhai, et al. In vitro degradation of porous nano-hydroxyapatite/collagen/PLLA scaffold reinforced by chitin fibres[J]. Materials Science and Engineering: C, 2006, 26(4): 716-720.

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