Dušek Karel, Dušková-Smrčková Miroslava
Institute of Macromolecular Chemistry, Czech Academy of Sciences, Heyrovského náměstí 2, 162 06 Praha 6, Prague, Czech Republic.
Gels. 2020 Jul 31;6(3):22. doi: 10.3390/gels6030022.
The history of volume phase transition of responsive gels from its theoretical prediction to experimental discovery was described and the major role of mixing Gibbs energy function in theoretical models was stressed. For detailed analysis and fine tuning of the volume phase transition, the generalized Flory-Huggins model with concentration and temperature dependent interaction function coupled with Maxwell construction as a tool is very suitable. Application of expansive stresses can uncover the potential of various swelling gels for volume phase transition. Experimentally, the abrupt, equilibrium-controlled phase transition is often hard to achieve due to passage of gel through states of mechanical instability and slow relaxation processes in macroscopic objects.
描述了响应性凝胶体积相变从理论预测到实验发现的历史,并强调了混合吉布斯自由能函数在理论模型中的主要作用。为了对体积相变进行详细分析和微调,具有浓度和温度依赖相互作用函数并结合麦克斯韦构造作为工具的广义弗洛里-哈金斯模型非常适用。施加膨胀应力可以揭示各种溶胀凝胶在体积相变方面的潜力。在实验中,由于凝胶在宏观物体中经历机械不稳定状态和缓慢的弛豫过程,往往难以实现突然的、平衡控制的相变。