Institute for Frontier Materials, Deakin University , Waurn Ponds Campus, 75 Pigdons Road, Geelong, Victoria 3220, Australia.
J Am Chem Soc. 2014 Nov 5;136(44):15638-45. doi: 10.1021/ja508290z. Epub 2014 Oct 27.
Organic ionic plastic crystals (OIPCs) are attractive as solid-state electrolytes for electrochemical devices such as lithium-ion batteries and solar and fuel cells. OIPCs offer high ionic conductivity, nonflammability, and versatility of molecular design. Nevertheless, intrinsic ion transport behavior of OIPCs is not fully understood, and their measured properties depend heavily on thermal history. Solid-state magnetic resonance imaging experiments reveal a striking image contrast anisotropy sensitive to the orientation of grain boundaries in polycrystalline OIPCs. Probing triethyl(methyl)phosphonium bis(fluorosulfonyl)imide (P1222FSI) samples with different thermal history demonstrates vast variations in microcrystallite alignment. Upon slow cooling from the melt, microcrystallites exhibit a preferred orientation throughout the entire sample, leading to an order of magnitude increase in conductivity as probed using impedance spectroscopy. This investigation describes both a new conceptual window and a new characterization method for understanding polycrystalline domain structure and transport in plastic crystals and other solid-state conductors.
有机离子塑性晶体 (OIPCs) 作为锂离子电池、太阳能电池和燃料电池等电化学器件的固态电解质具有吸引力。OIPCs 具有高离子电导率、不可燃性和分子设计的多功能性。然而,OIPCs 的固有离子输运行为尚未完全了解,其测量性能在很大程度上取决于热历史。固态磁共振成像实验揭示了一种惊人的各向异性图像对比度,该对比度对多晶 OIPC 晶界的取向敏感。用不同热历史的三乙基(甲基)膦双(氟磺酰基)亚胺 (P1222FSI) 样品进行探测表明,微晶取向有很大的变化。在从熔体缓慢冷却时,微晶体在整个样品中表现出优先取向,导致使用阻抗谱探测到电导率增加一个数量级。这项研究描述了一个新的概念窗口和一种新的表征方法,用于理解塑性晶体和其他固态导体中的多晶畴结构和输运。