首页> 外文会议>Nano Science and Technology Institute(NSTI) Nanotechnology Conference and Trade Show(NSTI Nanotech 2006) vol.2 >Dissolution of Hydrogen Bonded Polymers in Water; From Synthetic to Biopolymers
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Dissolution of Hydrogen Bonded Polymers in Water; From Synthetic to Biopolymers

机译:氢键聚合物在水中的溶解;从合成到生物聚合物

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摘要

In several nylons, for example nylon 4,6, a transition occurs at elevated temperatures in which the hydrogen bonding between adjacent chains is most likely to weaken, the so-called Brill transition. In this communication the influence of superheated water on nylon 4,6 at and above the Brill transition temperature is investigated, superheating being achieved by increased vapour pressure upon heating water and nylon in a sealed glass capillary. From time-resolved X-ray studies it is shown that close to the Brill transition temperature, nylon 4,6 dissolves in water. Crystallization from the solution still under moderate pressures (~20bars) leads to the formation of single crystals. These crystals grow directly in the triclinic phase without the intervention of the pseudo-hexagonal phase. By Infrared spectroscopy we speculate that water intercalated within the confined geometry of the unit cell leads to a unique vibrational spectra. The trapped water exits from the unit cell above the Brill transition temperature, once the vapour pressure is released. These experimental findings are not limited to a specific polymer, but have implications for the dissolution of all hydrogen bonded polymers, irrespective of whether they are synthetic or biopolymers.
机译:在几种尼龙中,例如尼龙4,6,在升高的温度下发生过渡,在该温度下相邻链之间的氢键最有可能被削弱,即所谓的布里尔过渡。在这种交流中,研究了在布里尔转变温度及以上温度下,过热水对尼龙4,6的影响,通过在密封玻璃毛细管中加热水和尼龙时增加蒸汽压来实现过热。从时间分辨的X射线研究表明,尼龙4,6接近Brill转变温度时会溶于水。从溶液中结晶仍在中等压力(〜20bars)下导致单晶的形成。这些晶体直接在三斜晶相中生长,而无需准六方相的介入。通过红外光谱,我们推测插在晶胞的有限几何形状内的水会导致独特的振动光谱。一旦释放出蒸汽压力,被捕集的水就会从高于布里尔温度的晶胞中流出。这些实验结果不限于特定的聚合物,而是对所有氢键聚合物的溶解都具有影响,无论它们是合成聚合物还是生物聚合物。

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