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首页> 外文期刊>Angewandte Chemie >Trisulfide-Bond Acenes for Organic Batteries
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Trisulfide-Bond Acenes for Organic Batteries

机译:用于有机电池的三硫化物 - 键合乙烯

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摘要

The molecular design of organic battery electrodes is a big challenge. Here, we synthesize two metal-free organosulfur acenes and shed insight into battery properties using first-principles calculations. A new zone-melting chemical-vapor-transport (ZM-CVT) apparatus was fabricated to provide a simple, solvent-free, and continuous synthetic protocol, and produce single crystals of tetrathiotetracene (TTT) and hexathiapentacene (HTP) at a large scale. Single crystals of HTP showed better Li-ion battery performance and higher cycling stability than those of TTT. A two-step, three-electron lithiation mechanism instead of the commonly depicted two-electron mechanism is proposed for the HTP Li-ion battery. The superior performance of HTP is linked to unique trisulfide bonding scenarios, which are also responsible for the formation of empty channels along the stacking direction. In-depth theoretical analysis suggests that organosulfur acenes are potential prototypes for organic battery materials with tunable properties, and that the tuning of sulfur bonds is critical in designing these new materials.
机译:有机电池电极的分子设计是一个很大的挑战。在这里,我们使用一致原理计算将两个无金属有机硫氧化物和血液洞穴性合成电池性能。制造了一种新的区域熔化化学 - 蒸汽转运(ZM-CVT)设备,以提供简单,无溶剂和连续的合成方案,并以大规模生产四硫代替烯(TTT)和HaxathiaPentacene(HTP)的单晶。 HTP的单晶显示出更好的锂离子电池性能和比TTT的循环稳定性更高。为HTP锂离子电池提出了两步,三电子锂电机构代替通常描绘的两电子机构。 HTP的卓越性能与独特的三硫化物粘合方案相关联,这些情况也负责沿着堆叠方向形成空通道。深入的理论分析表明有机硫磺对有机电池材料具有可调谐性质的潜在原型,并且硫粘合的调整对于设计这些新材料至关重要。

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