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Polyaniline-modified cetyltrimethylammonium bromide- graphene oxide-sulfur nanocomposites with enhanced performance for lithium-sulfur batteries
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Citations
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References
2014
Year
EngineeringNanostructured PolymerPolymer NanocompositesChemistry传导性的聚合物涂层能增加锂硫电池的力量存储能力。我们在把一个灵巧、绿的化学免职方法与修改的氧化聚合接近 PolyanilinePolymersChemical EngineeringCarbon-based Material-Graphene 氧化物Polymer ChemistryMaterials ScienceCtab-go-s Nanocomposites,即, 970Lithium-ion BatteryLithium-ion BatteriesEnergy StorageSolid-state BatteryElectrochemistryNanomaterialsEnhanced PerformanceGraphene FiberGrapheneElectrochemical Energy StorageLithium-sulfur BatteriesBatteriesNanocompositeFunctional Materials
传导性的聚合物涂层能增加锂硫电池的力量存储能力。我们在把一个灵巧、绿的化学免职方法与修改的氧化聚合接近 polyaniline (PANI ) 相结合的设计和准备由上这里报导 cetyltrimethylammonium 溴化物(CTAB )-graphene 氧化物(去) 有在锂硫电池的显著地提高的性能的硫(S) nanocomposites。当硫阴极材料能交付高特定的分泌物能力和长期的骑车性能,如此的传导性的聚合物修改了 CTAB-GO-S nanocomposites,即, 970 mAh 瑩 ? 睴? 潤業慮瑮猠慣瑴牥湩 ? 数歡? 湩猠数瑣慲琠歡湥眠瑩 ? 桴 ? 潰慬楲慺楴湯愠楬湧摥愠潬杮琠敨搠浩牥愠楸吗?
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