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Solid biopolymer electrolytes came from renewable biopolymer

机译:固体生物聚合物电解质来自可再生生物聚合物

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Solid polymer electrolytes (SPEs) have attracted many attentions as solid state ionic conductors, because of their advantages such as high energy density, electrochemical stability, and easy processing. SPEs obtained from starch have attracted many attentions in recent years because of its abundant, renewable, low price, biodegradable and biocompatible. In addition, the efficient utilization of biodegradable polymers came from renewable sources is becoming increasingly important due to diminishing resources of fossil fuels as well as white pollution caused by undegradable plastics based on petroleum. So N, N-dimethylacetamide (DMAc) with certain concentration ranges of lithium chloride (LiCl) is used as plasticizers of cornstarch. Li~+ can complexes with the carbonyl atoms of DMAc molecules to produce a macro-cation and leave the Cl~- free to hydrogen bond with the hydroxyl or carbonyl of starch. This competitive hydrogen bond formation serves to disrupt the intra- and intermolecular hydrogen bonding existed in starch. Therefore, melt extrusion process conditions are used to prepare conductive thermoplastic starch (TPS). The improvements of LiCl concentration increase the water absorption and conductance of TPS. The conductance of TPS containing 0.14 mol LiCl achieve to 10~(-0.5) S cm~(-1) with 18 wt% water content.
机译:固态聚合物电解质(SPE)作为固态离子导体因其具有诸如高能量密度,电化学稳定性和易于加工等优点而备受关注。近年来,由淀粉制得的固相萃取因其丰富,可再生,价格低廉,可生物降解和生物相容性而备受关注。另外,由于化石燃料的资源减少以及基于石油的不可降解塑料引起的白色污染,来自可再生资源的可生物降解聚合物的有效利用变得越来越重要。因此,将具有一定浓度范围的氯化锂(LiCl)的N,N-二甲基乙酰胺(DMAc)用作玉米淀粉的增塑剂。 Li〜+可以与DMAc分子的羰基原子络合形成大阳离子,而Cl〜-则与淀粉的羟基或羰基保持氢键自由。这种竞争性氢键形成用于破坏淀粉中存在的分子内和分子间氢键。因此,使用熔融挤出工艺条件来制备导电热塑性淀粉(TPS)。 LiCl浓度的提高增加了TPS的吸水率和电导率。含水量为18 wt%时,含0.14 mol LiCl的TPS的电导率达到10〜(-0.5)S cm〜(-1)。

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