SYNTHESIS AND CHARACTERIZATION OF HIGH MOLECULAR WEIGHT POLY(1,2-PROPYLENE CARBONATE-co-1,2-CYCLOHEX

来源 :Chinese Journal of Polymer Science | 被引量 : 0次 | 上传用户:songyang1988
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Using supported multi-component zinc dicarboxylate catalyst,poly(1,2-propylene carbonate-co-1,2-cyclohexylene carbonate)(PPCHC) was successfully synthesized from carbon dioxide(CO_2) with propylene oxide(PO) and cyclohexene oxide(CHO).The conversion of epoxides dramatically increased up to 89.7%(yield:384.2 g of polymer per g of Zn) with increasing reaction temperature from 60℃to 80℃.The optimized reaction temperature is 80℃.The chemical structure,the molecular weight,as well as thermal and mechanical properties of the resulting terpolymers were investigated extensively. When CHO feed content(mol%) is lower than 10%,the PPCHC terpolymers have number average molecular weight(M_n) ranging from 102×10~3 to 202×10~3 and molecular weight distribution(MWD) values ranging from 2.8 to 3.5.In contrast to poly(propylene carbonate)(PPC),the introduction of small amount of CHO leads to increase in the glass transition temperature from 38.0℃to 42.6℃.Similarly,the mechanical strength of the synthesized terpolymer is greatly enhanced due to the incorporation of CHO.These improvements in mechanical and thermal properties are of importance for the practical application of PPC. Using supported multi-component zinc dicarboxylate catalyst, poly (1,2-propylene carbonate-co-1,2-cyclohexylene carbonate) (PPCHC) was synthesized synthetically from carbon dioxide (CO_2) with propylene oxide (PO) and cyclohexene oxide ). The conversion of epoxides improved increased to 89.7% (yield: 384.2 g of polymer per g of Zn) with increasing reaction temperature from 60 ° C. to 80 ° C. The optimized reaction temperature is 80 ° C. The chemical structure, the molecular weight , when the CHO feed content (mol%) is lower than 10%, the PPCHC terpolymers have a number average molecular weight (M_n) ranging from 102 × 10 -3 to 202 × 10-3 and molecular weight distribution (MWD) values ​​ranging from 2.8 to 3.5. In contrast to poly (propylene carbonate) (PPC), the introduction of small amount of CHO leads to increase in the glass transition temperature from 38.0 ° C to 42.6 ℃ .Similarly, the mechanical strength of the synthesized terpolymer is greatly enhanced due to the incorporation of CHO. the improvements in mechanical and thermal properties are of importance for the practical application of PPC.
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