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Published on: February 7, 2017
Ternary Stereocomplex Formation of One l-Configured and Two d-Configured Optically Active Polyesters,
Hideto Tsuji1, Mao Hosokawa1, Yuzuru Sakamoto1
1Department of Environmental and Life Sciences, Graduate School of Engineering, Toyohashi University of Technology, Tempaku-cho, Toyohashi, Aichi 441-8580, Japan.
Abstract:
The ternary stereocomplex formation of optically active polyesters, l-configured poly(l-2-hydroxybutanoic acid) [P(l-2HB)] and d-configured poly(d-2-hydroxybutanoic acid) [P(d-2HB)] and poly(d-lactic acid) (PDLA), is reported. Ternary P(l-2HB)/P(d-2HB)/PDLA blends were prepared by solution-casting to have a fixed content (50 mol %) of l-configured P(l-2HB) and different contents of d-configured P(d-2HB) relative to those of PDLA, and stereocomplex formation in the blends was investigated using wide-angle X-ray scattering and differential scanning calorimetry. The interplane distances of solution- and melt-crystallized blends were estimated from the 2θ values at around 11° and 22°, and the melting temperatures of stereocomplex increased continuously with increasing the P(d-2HB) content relative to that of PDLA in the blends, indicating the formation of a ternary stereocomplex. The stereocomplex crystallinity values of ternary blends were much higher than the values calculated from binary P(l-2HB)/P(d-2HB) and P(l-2HB)/PDLA blends wherein respectively only the binary P(l-2HB)/P(d-2HB) homostereocomplex and P(l-2HB)/PDLA heterostereocomplex were formed, reflecting the facile crystallization of the ternary stereocomplex.
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