首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >A Janus protein-based nanofabric for trapping polysulfides and stabilizing lithium metal in lithium-sulfur batteries
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A Janus protein-based nanofabric for trapping polysulfides and stabilizing lithium metal in lithium-sulfur batteries

机译:基于Janus蛋白质的纳米制剂用于捕获多硫化物和稳定锂 - 硫磺电池中的锂金属

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The shuttling of polysulfides and uncontrollable growth of lithium dendrites remain the most critical obstacles deteriorating the performance and safety of lithium-sulfur batteries. The separator plays a key role in molecule diffusion and ion transport kinetics; thus, endowing the separator with functions to address the two abovementioned issues is an urgent need. Herein, a protein-based, low-resistance Janus nanofabric is designed and fabricated for simultaneously trapping polysulfides and stabilizing lithium metal. The Janus nanofabric is achieved via combining two functional nanofabric layers, a gelatin-coated conductive nanofabric (G@CNF) as a polysulfide-blocking layer and a gelatin nanofabric (G-nanofabric) as an ion-regulating layer, into a heterostructure. The gelatin coating of G@CNF effectively enhances the polysulfide-trapping ability owing to strong gelatin-polysulfide interactions. The G-nanofabric with exceptional wettability, high ionic conductivity (4.9 x 10(-3) S cm(-1)) and a high lithium-ion transference number (0.73) helps stabilize ion deposition and thus suppresses the growth of lithium dendrites. As a result, a Li/Li symmetric cell with the G-nanofabric delivers ultra-long cycle life over 1000 h with very stable performance. Benefiting from the synergistic effect of the two functional layers of the Janus nanofabric, the resulting Li-S batteries demonstrate excellent capacity, rate performance and cycling stability (e.g. initial discharge capacity of 890 mA h g(-1) with a decay rate of 0.117% up to 300 cycles at 0.5 A g(-1)).
机译:锂枝条的多硫化物和无法控制的生长仍然是锂 - 硫电池性能和安全性的最关键的障碍。分离器在分子扩散和离子输送动力学中起关键作用;因此,赋予分离器与功能解决两个上述问题是迫切需要的。在此,设计和制造基于蛋白质的低阻Janus纳米谱,用于同时捕获多硫化物和稳定锂金属。通过将两个功能性纳米织造层,将明胶涂覆的导电纳米制和作为多硫化脲封端层和作为离子调节层的明胶纳米法(G型纳米缩具)作为离子调节层来实现janus纳米缩窄。 G×CNF的明胶涂层有效提高了由于强大的明胶 - 多硫化物相互作用的多硫化物捕获能力。具有特殊润湿性,高离子电导率(4.9×10(-3)厘米(-1))和高锂离子转移数(0.73),有助于稳定离子沉积并因此抑制锂枝晶的生长。结果,具有G型纳米造型的Li / Li对称电池以超过1000小时的超长循环寿命,具有非常稳定的性能。受益于Janus纳米谱两种功能层的协同效果,所得到的Li-S电池表现出优异的容量,速率性能和循环稳定性(例如890 mA Hg(-1)的初始放电容量,衰减率为0.117%在0.5 A g(-1)时最多300个循环。

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