Giroto Amanda S, Valle Stella F, Borges Roger, Colnago Luiz A, Ribeiro Tatiana S, Jablonowski Nicolai D, Ribeiro Caue, Mattoso Luiz H C
Embrapa Instrumentation, XV de Novembro Street, 1452, São Carlos 13560-970, SP, Brazil.
Forschungszentrum Jülich GmbH, Institute of Bio- and Geosciences, IBG-2: Plant Sciences, 52425 Jülich, Germany.
Polymers (Basel). 2023 Nov 2;15(21):4303. doi: 10.3390/polym15214303.
A detailed structural investigation of a promising bio-based polymer, polyglycerol citrate polyester, obtained by the bulk polycondensation of glycerol (Gly) against citric acid (Cit) under mild reaction was performed. The reaction in conditions with and without catalyst use (sulfuric acid, HSO) was investigated, showing evidence that it is possible to modify the polymer solubility according to the ratio and catalyst utilization. C and H NMR indicated that synthesis catalyzed with Cit excess leads to higher esterification degrees of citrate groups. In contrast, the Gly moieties are more prominent in catalyzed polymers regardless of the excess monomers. Overall, a successful conversion of Gly and Cit into polyesters was attained even without catalysis, enabling a simple route for the large-scale production of this green material to be used as a coating material. This polymer has been shown to be well-suited for coating seeds and might be a promising material for similar agricultural applications. Tests on soybean seed coating with a PGCit solution of 75% indicated that the seed quality and germination rate were not affected by the PGCit coating, concluding that this polymer is suitable for this application.
对一种有前景的生物基聚合物——柠檬酸聚甘油酯聚酯进行了详细的结构研究。该聚合物是通过甘油(Gly)与柠檬酸(Cit)在温和反应条件下进行本体缩聚反应制得的。研究了在使用和不使用催化剂(硫酸,HSO)的条件下的反应,结果表明根据比例和催化剂的使用情况可以改变聚合物的溶解度。碳核磁共振(C NMR)和氢核磁共振(H NMR)表明,以过量柠檬酸催化合成会导致柠檬酸基团具有更高的酯化度。相比之下,无论单体是否过量,在催化聚合物中甘油部分更为突出。总体而言,即使不使用催化剂也能成功地将甘油和柠檬酸转化为聚酯,从而为大规模生产这种用作涂层材料的绿色材料提供了一条简单途径。这种聚合物已被证明非常适合用于包衣种子,并且可能是类似农业应用中的一种有前景的材料。用75%的柠檬酸聚甘油酯溶液对大豆种子进行包衣试验表明,种子质量和发芽率不受柠檬酸聚甘油酯包衣的影响,得出该聚合物适用于此应用的结论。