Molecular Foundry, ‡Materials Sciences Division, and §Environmental Energy Technologies Division, Lawrence Berkeley National Laboratory, University of California , Berkeley, California 94720, United States.
J Am Chem Soc. 2014 Oct 22;136(42):14990-7. doi: 10.1021/ja5080689. Epub 2014 Oct 9.
Polymers that dissolve and conduct lithium ions are of great interest in the application of rechargeable lithium batteries. It is generally believed that the transport of ions in these systems is facilitated by rapid segmental motion typically found in rubbery, amorphous polymers. In this paper, we demonstrate that chemically identical ethyleneoxy-containing domains of a block copolymer exhibit comparable conductivities when in an amorphous or a crystalline state. An important feature of this study is the use of sequence-defined block copolypeptoids synthesized by submonomer solid-phase synthesis. Two structurally analogous ethyleneoxy-containing diblock copolypeptoids poly-N-(2-ethyl)hexylglycine-block-poly-N-2-(2-(2-methoxyethoxy)ethoxy)ethylglycine (pNeh-b-pNte) and poly-N-decylglycine-block-poly-N-2-(2-(2-methoxyethoxy)ethoxy)ethylglycine (pNdc-b-pNte) with 18 monomer units per block were synthesized. Both diblock copolypeptoids have the same conducting block, pNte, but different nonconducting blocks: pNeh, which is amorphous, and pNdc, which is crystalline. Both diblock copolypeptoids self-assemble into a lamellar morphology; however, pNte chains are amorphous in pNeh-b-pNte and crystalline in pNdc-b-pNte. This provides the platform for comparing lithium ion transport in amorphous and crystalline polymer domains that are otherwise similar.
在可再充电锂电池的应用中,能够溶解并传导锂离子的聚合物具有很大的研究价值。人们普遍认为,这些体系中的离子传输是通过通常在橡胶状无定形聚合物中发现的快速链段运动来促进的。在本文中,我们证明了嵌段共聚物中化学性质相同的乙氧基封端的嵌段在无定形或结晶状态下具有相当的电导率。这项研究的一个重要特点是使用通过亚单体制备的固相合成法合成的序列确定的嵌段聚肽。两种结构类似的含乙氧基的二嵌段聚肽,聚 N-(2-乙基)己基甘氨酸-嵌段-聚 N-2-(2-(2-甲氧基乙氧基)乙氧基)乙基甘氨酸(pNeh-b-pNte)和聚 N-癸基甘氨酸-嵌段-聚 N-2-(2-(2-甲氧基乙氧基)乙氧基)乙基甘氨酸(pNdc-b-pNte),每个嵌段都有 18 个单体单元,被合成出来。这两种二嵌段聚肽都具有相同的导电嵌段 pNte,但非导电嵌段不同:pNeh 是无定形的,pNdc 是结晶的。两种二嵌段聚肽都自组装成层状形态;然而,pNte 链在 pNeh-b-pNte 中是无定形的,而在 pNdc-b-pNte 中是结晶的。这为比较在其他方面相似的无定形和结晶聚合物域中的锂离子传输提供了平台。