首页> 外文期刊>Journal of biomaterials and nanobiotechnology. >Water—A Key Substance to Comprehension of Stimuli-Responsive Hydrated Reticular Systems
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Water—A Key Substance to Comprehension of Stimuli-Responsive Hydrated Reticular Systems

机译:水—刺激刺激的水合网状系统的关键物质。

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Thermo-responsive hydrated macro-, micro- and submicro-reticular systems (TRHRS), particularly polymers forming hydrogels or similar networks, have attracted extensive interest because comprise biomaterials, smart or intelligent materials. Phase transition temperature (LCST or UCST, i.e. low or upper critical solution temperature, respectively) at about the TRHRS exhibiting a unique hydration-dehydration change is a typical characteristic. The characterization and division of the TRHRS are described followed by explanation of their behaviour. The presented original explanation is based on merely combination of basic thermodynamical state of individual useful macromolecule chains (long-chain or coil) with inter- and intra-mutual action of attractive and repulsive intramolecular hydration forces among them being strongly dependent upon temperature. Acquainted with this piece of knowledge, a theoretical concept of really biological systems movement, e.g. muscle tissues or artificial muscle etc., can be formulated.
机译:热响应性水合大,微和亚微网状体系(TRHRS),特别是形成水凝胶或类似网络的聚合物,由于包含生物材料,智能或智能材料而引起了广泛的关注。大约TRHRS处的相变温度(分别为LCST或UCST,即低或上临界溶液温度)表现出独特的水合-脱水变化是典型特征。描述了TRHRS的特征和划分,并解释了其行为。提出的原始解释仅基于单个有用大分子链(长链或线圈)的基本热力学状态与相互之间和相互之间的有吸引力的和排斥的分子内水合作用的作用,这些作用强烈地取决于温度。掌握了这一知识后,便有了一个真正的生物系统运动的理论概念,例如可以配制肌肉组织或人造肌肉等。

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