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Combined physical confinement and chemical adsorption on co-doped hollow TiO2 for long-term cycle lithium–sulfur batteries

机译:结合物理约束和化学吸附在co-doped空心二氧化钛为长期周期锂硫电池

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Lithium–sulfur (Li–S) batteries have long been expected to be promising high-energy-density secondary batteries because of their high theoretical specific capacity and element abundances. Yet, their poor cyclability and low rate-capacity strongly limited their practical application. Herein, a nitrogen and sulfur dual doped hollow TiO2 sphere is designed and synthesized for the sulfur host. The dual doped hollow TiO2 can enhance the adsorption ability of soluble lithium polysulfides, which effectively promote the conversion reaction of lithium polysulfides from high-order to low-order in Li–S batteries. What is more, the hollow spherical TiO2 host provides a deposition space for lithium polysulfides and blocks polysulfide migration from the cathode to the electrolyte. Both theoretical calculations and experimental studies confirmed that the electrochemical properties of the sulfur electrode are significantly improved by the dual doped hollow TiO2 sphere. The typical as-prepared dual doped hollow TiO2 cathode coated sulfur has a capacity of 1258 mA h g−1 for the first discharge and a capacity decay as low as 0.0648% per cycle during 500 cycles with a sulfur loading of 3.8 mg cm−2.
机译:锂硫电池(Li-S)一直预计将有前途的高能量密度二次电池,因为他们的高理论比容量和元素丰度。额定容量非常有限的实际应用程序。掺杂二氧化钛空心球设计合成硫的主机。空心二氧化钛能增强的吸附能力可溶性多硫化锂,这有效促进锂的转换反应多硫化Li-S从高位到低位电池。二氧化钛主机提供了一个为锂沉积空间聚硫和块聚硫迁移从阴极电解液。理论计算和实验研究确认的电化学性质硫电极显著提高双掺杂的二氧化钛空心球体。和双掺杂二氧化钛空心阴极涂层硫的容量1258毫安h g−1首次放电容量衰减低0.0648%硫循环在500年周期加载3.8毫克厘米−2。

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