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由N-(L)-(1-羟甲基)丙基甲基丙烯酰胺构建的旋光水凝胶的热敏感性。

Thermosensitivity of optically active hydrogels constructed with N-(L)-(1-hydroxymethyl)propylmethacrylamide.

作者信息

Aoki Takashi, Muramatsu Mika, Nishina Akino, Sanui Kohei, Ogata Naoya

机构信息

Department of Polymer Science and Engineering, Kyoto Institute of Technology, Matsugasaki, Sakyo, Kyoto 606-8585, Japan.

出版信息

Macromol Biosci. 2004 Oct 20;4(10):943-9. doi: 10.1002/mabi.200400033.

Abstract

We previously reported on the water soluble, optically active polymer, poly[N-(L)-(1-hydroxymethyl)propylmethacrylamide] (P(L-HMPMA)), which has lower critical solution temperatures of approximately 30 and 21 degrees C upon heating and cooling, respectively. The phase separation behavior of the P(L-HMPMA)-water binary system has a reversible and clear hysteresis during heating and cooling cycles. The present study describes the thermosensitive properties of the optically active polymer and its hydrogel. Circular dichroism and microcalorimetric measurements of the polymer in water supported the hypothesis that the soluble polymer chains might be compactly folded with an interaction between optically active side chains. In addition, these measurements showed the polymer chains in a state of relatively low hydration compared to that of P(D,L-HMPMA), which was free-radically synthesized from racemates of monomers. The solution properties reflected the swollen-shrunken behavior of corresponding hydrogels in response to temperature changes. The microscopic observation of aqueous polymer solutions and hydrogels also confirmed that the optically active properties of polymer chains affect their structure and thermosensitivity. SEM micrograph of the surfaces of the crosslinked P(L-HMPMA).

摘要

我们之前报道了水溶性、具有光学活性的聚合物聚N-(L)-(1-羟甲基)丙基甲基丙烯酰胺,其在加热和冷却时的下临界溶液温度分别约为30℃和21℃。P(L-HMPMA)-水二元体系的相分离行为在加热和冷却循环过程中具有可逆且明显的滞后现象。本研究描述了该光学活性聚合物及其水凝胶的热敏性质。对该聚合物在水中的圆二色性和微量热测量支持了以下假设:可溶性聚合物链可能通过光学活性侧链之间的相互作用紧密折叠。此外,这些测量表明,与由单体外消旋体自由基合成的P(D,L-HMPMA)相比,该聚合物链处于水合程度相对较低的状态。溶液性质反映了相应水凝胶响应温度变化时的溶胀-收缩行为。对聚合物水溶液和水凝胶的微观观察也证实,聚合物链的光学活性性质影响其结构和热敏性。交联P(L-HMPMA)表面的扫描电子显微镜照片。

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