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首页> 外文期刊>Acta biomaterialia >Polymer chain scission, oligomer production and diffusion: a two-scale model for degradation of bioresorbable polyesters.
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Polymer chain scission, oligomer production and diffusion: a two-scale model for degradation of bioresorbable polyesters.

机译:聚合物断链,低聚物产生和扩散:生物可吸收聚酯降解的两尺度模型。

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摘要

This paper presents a computer model for the biodegradation of polyesters such as poly(lactic acid), poly(glycolic acid) and their copolymers. The model can take polymer details such as molecular weight distribution, different end and random scission rates and copolymer ratio as input data. A multi-scale approach is developed: polymer chain scission and oligomer production which occur at the molecular scale are modelled using a kinetic Monte Carlo scheme, oligomer diffusion which occurs at the device scale is modelled using a diffusion equation, and the two are connected at the finite difference nodes of the diffusion equation. The two-scale model can be used to predict the temporal evolution and spatial distribution of molecular weight distribution in a device as well as the weight loss as a function of time. It is shown that the kinetic Monte Carlo scheme can accurately predict the effect of copolymer ratio on the degradation rate. Grizzi and co-workers observed in their experiments that a PLA film 0.3mm thick degrades much more slowly than one that is 2mm thick. The numerical study shows that the conceptional reaction diffusion model suggested by Grizzi et al. needs to be extended in order to explain the size effect fully.
机译:本文提出了一种可生物降解聚酯的计算机模型,例如聚乳酸,聚乙醇酸及其共聚物。该模型可以将聚合物的详细信息(例如分子量分布,不同的末端和随机断裂速率以及共聚物比率)作为输入数据。开发了一种多尺度方法:使用动力学蒙特卡洛方案对在分子规模发生的聚合物链断裂和低聚物产生进行建模,在器件尺度发生的低聚物扩散通过扩散方程进行建模,并且两者在扩散方程的有限差分节点。两尺度模型可用于预测设备中分子量分布的时间演变和空间分布以及重量损失随时间的变化。结果表明,动力学蒙特卡洛方案可以准确预测共聚物比例对降解速率的影响。 Grizzi及其同事在实验中观察到,0.3毫米厚的PLA膜的降解速度比2毫米厚的PLA膜降解慢得多。数值研究表明,Grizzi等人提出了概念反应扩散模型。需要扩展以充分解释尺寸效应。

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