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Development and Characterization of Degradable Thiol-Allyl Ether Photopolymers

机译:可降解的巯基-烯丙基醚光敏聚合物的开发与表征

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摘要

Degradable thiol-ene photopolymer networks were formed through radically mediated step growth reactions. Variations in the network structure were used to alter the initial and temporal moduli, mass loss profiles, and equilibrium swelling ratios. Mass loss rates varied with changes in the solvent concentration, monomer molecular weight, average monomer functionality, and concentration of degradable linkages. The time required for the networks to degrade completely ranged from 1.20 ± 0.01 to 24.5 ± 0.1 days, which corresponded to hydrolysis rates of 0.18 ± 0.01 and 0.021 ± 0.0003 days-1. Initial moduli also varied considerably as a function of network structure, ranging from 150 ± 35 to nearly 5000 ± 100 kPa, and initial equilibrium swelling ratios ranged from 2.5 ± 0.01 to 18.7 ± 2. Collectively, these results demonstrate how the material properties and the mass loss behavior of thiol-ene networks can be independently tuned for specific applications.
机译:可降解的硫醇-烯光聚合物网络是通过自由基介导的逐步生长反应形成的。网络结构的变化用于更改初始和时间模量,质量损失曲线和平衡溶胀率。质量损失率随溶剂浓度,单体分子量,平均单体官能度和可降解键浓度的变化而变化。网络完全降解所需的时间为1.20±0.01到24.5±0.1天,对应于0.18±0.01和0.021±0.0003天的水解速率 -1 。初始模量也随着网络结构的变化而变化很大,范围从150±35到接近5000±100 kPa,初始平衡溶胀比在2.5±0.01到18.7±2范围内。硫醇-烯网络的质量损失行为可以针对特定应用进行独立调整。

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