Method for synthesizing high molecular weight polylactic acid
A technology of high molecular weight and polylactic acid, applied in the field of synthesis of organic polymer compounds, can solve problems such as low production efficiency and long reaction time
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Embodiment 1
[0015] In the 250mL reaction bottle, add L-lactic acid and polylactic acid (viscosity-average molecular weight is 3,000) altogether 120 grams, the two mass ratios are 3: 7, and the catalyst stannous chloride of 0.5% (W / W), at 104 Distill under reduced pressure at ~110°C for 2 hours to remove moisture in L-lactic acid, and keep the absolute pressure at 1kPa. Then the temperature was raised to 160-180° C., the absolute pressure was reduced to 70 Pa, and the reaction was carried out under stirring for 10 hours to obtain the product polylactic acid, whose viscosity-average molecular weight was measured to be 17,600.
Embodiment 2
[0017] In a 250mL reaction bottle, add a total of 100 grams of dehydrated L-lactic acid and polylactic acid (viscosity average molecular weight: 6,000), the mass ratio of the two is 5:5, and add 0.5% (W / W) catalyst chlorinated chlorinated acid. Tin, heated to 160-180°C, stirred and reacted for 10 hours under an absolute pressure of 70 Pa to obtain polylactic acid, and its viscosity-average molecular weight was measured to be 22,600.
Embodiment 3
[0019] In a 250mL reaction bottle, add 36 grams of polylactic acid (viscosity-average molecular weight: 8,500), raise the temperature to 160-180°C, keep an absolute pressure below 70Pa, and continuously add 80 grams of dehydrated L-lactic acid ( Containing 0.5% (W / W) of the catalyst stannous chloride), the dripping time is 4 hours, and the total reaction time is 10 hours to obtain the product polylactic acid, and the viscosity-average molecular weight is 42,600.
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