首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Experimental Investigation and Thermodynamic Assessment of Phase Equilibria in the PLLA/Dioxane/Water Ternary System for Applications in the Biomedical Field
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Experimental Investigation and Thermodynamic Assessment of Phase Equilibria in the PLLA/Dioxane/Water Ternary System for Applications in the Biomedical Field

机译:用于生物医学领域的PLLA /二恶烷/水三元体系中相平衡的实验研究和热力学评估

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Fundamental understanding of thermodynamic of phase separation plays a key role in tuning the desired features of biomedical devices. In particular, phase separation of ternary solution is of remarkable interest in processes to obtain biodegradable and biocompatible architectures applied as artificial devices to repair, replace, or support damaged tissues or organs. In these perspectives, thermally induced phase separation (TIPS) is the most widely used technique to obtained porous morphologies and, in addition, among different ternary systems, polylactic acid (PLLA)/dioxane/water has given promising results and has been largely studied. However, to increase the control of TIPS-based processes and architectures, an investigation of the basic energetic phenomena occurring during phase separation is still required. Here we propose an experimental investigation of the selected ternary system by using isothermal titration calorimetric approach at different solvent/antisolvent ratio and a thermodynamic explanation related to the polymer-solvents interactions in terms of energetic contribution to the phase separation process. Furthermore, relevant information about the phase diagrams and interaction parameters of the studied systems are furnished in terms of liquid-liquid miscibility gap. Indeed, polymer-solvents interactions are responsible for the mechanism of the phase separation process and, therefore, of the final features of the morphologies; the knowledge of such data is fundamental to control processes for the production of membranes, scaffolds and several nanostructures. The behavior of the polymer at different solventonsolvent ratios is discussed in terms of solvation mechanism and a preliminary contribution to the understanding of the role of the hydrogen bonding in the interface phenomena is also reported. It is the first time that thermodynamic data of a ternary system are collected by mean of nano-isothermal titration calorimetry (nano-ITC). Supporting Information is available.
机译:对相分离热力学的基本了解在调节生物医学设备的所需功能方面起着关键作用。特别地,三元溶液的相分离在获得用作可修复,替换或支撑受损组织或器官的人造装置的可生物降解和生物相容性体系结构的方法中引起了极大的兴趣。从这些角度来看,热诱导相分离(TIPS)是获得多孔形态的最广泛使用的技术,此外,在不同的三元体系中,聚乳酸(PLLA)/二恶烷/水已获得了令人鼓舞的结果,并且已得到广泛研究。但是,为了增加对基于TIPS的过程和体系结构的控制,仍然需要研究在相分离过程中发生的基本能量现象。在这里,我们提出了通过使用等温滴定量热法在不同溶剂/反溶剂比率下对选定的三元体系进行实验研究,并就能量对相分离过程的贡献而言,涉及聚合物-溶剂相互作用的热力学解释。此外,根据液-液混溶性间隙提供了有关所研究系统的相图和相互作用参数的相关信息。确实,聚合物与溶剂的相互作用是造成相分离过程的机制,因此也决定了形态的最终特征。这些数据的知识对于控制膜,支架和几种纳米结构的生产过程至关重要。根据溶剂化机理讨论了聚合物在不同溶剂/非溶剂比率下的行为,并且还报道了对理解氢键在界面现象中的作用的初步贡献。这是首次通过纳米等温滴定热法(nano-ITC)收集三元体系的热力学数据。提供支持信息。

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