硫黄
阴极
氧化还原
电极
化学
无机化学
材料科学
化学工程
冶金
工程类
物理化学
作者
Jin Hong Lee,Hobeom Kwack,Min Kyung Kim,Wonhee Jo,Hyungjun Noh,Yun‐Jung Kim,Hyunwon Chu,Jaewon Baek,Youngil Roh,Jiwhan Noh,Hee‐Tak Kim
标识
DOI:10.1002/celc.202100099
摘要
Abstract Increasing of sulfur loading in a sulfur cathode is a direct approach to improve the energy density of lithium sulfur (Li−S) batteries. However, the inhomogeneous redox reaction in high‐sulfur loaded, thick electrodes presents a challenge. Here, we report that the sulfur utilization in thick sulfur cathodes can be enhanced by simply making ditches on the electrodes. A nanosecond‐pulse laser is used to carve the line‐ditch pattern on the surface of the sulfur cathode, without damaging the surface pore structure. The ditch structure can promote the transport of lithium ion into the deep interior of sulfur cathode, resulting in more uniform sulfur redox reaction. A ditch‐structured sulfur cathode with a sulfur loading of 7 mg ⋅ cm −2 shows seven times higher sulfur utilization at a high current of 5.2 mA ⋅ cm −2 compared with an unpatterned sulfur electrode. Simple laser patterning technology provides a platform to engineer a thick cathode of high performance.
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