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Crossover of Rate-Limiting Process in Plasma Gel Growth by Contact with Source of Gelator

机译:通过与凝胶源接触的血浆凝胶生长速率限制过程的交叉

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摘要

Plasma is regarded as a solution of precursor polymers specifically transformed to gel-forming polymers by a reaction with initiators. We developed a theory for the gel growth dynamics of plasma induced by contact with a source of gelators that are yielded by the initiation. In developing the theory, we combined the Ginzburg–Landau type dynamics with the gelator diffusion dynamics expressed by the moving boundary picture. The theory predicts the crossover of the rate-limiting process in the time course of the thickness of the gel layer X from the energy-limited process expressed by X∼t to the diffusion-limited process expressed by X∼t, where t is the time elapsed from when the plasma comes into contact with the source of gelators. A demonstration experiment was performed by placing a tissue factor coating plate as the initiator in plasma. Log–log plot of X vs. t showed a crossover as predicted by the theory, and the parameters characterizing plasma were determined.
机译:等离子体被认为是通过与引发剂的反应特异性转化为凝胶形成聚合物的前体聚合物的溶液。我们开发了通过与引发产生的凝胶源接触引起的血浆凝胶生长动态的理论。在开发理论时,我们将吉尔格堡 - Landau型动力学与移动边界图像表示的凝胶仪扩散动态组合。该理论预测凝胶层X的厚度的速率限制过程的交叉从X〜T表达到X〜T表示的扩散限制过程的能量限制过程中,其中T是从等离子体与凝胶源接触时经过的时间。通过将组织因子涂层板作为血浆中的引发剂放置来进行示范实验。 x与t的记录曲线图显示了由理论预测的交叉,并确定表征等离子体的参数。

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