多面体
材料科学
纳米颗粒
兴奋剂
化学工程
碳纳米管
纳米技术
氢
氢气储存
碳纤维
化学
光电子学
复合材料
有机化学
复合数
工程类
数学
几何学
作者
Yan Lin,Xiaojiao Cui,Pinxin Liu,Zihan Wang,Xin Zhang,Xin Yang,Chao Feng,Yuan Pan
标识
DOI:10.1002/cctc.202401155
摘要
Abstract Electrode active materials are the foremost component for energy related electrocatalysis and storage. Rational design and controlled synthesis of hybrid nanostructures is essential to achieve high efficiency but still challenging. Herein, we reported the synthesis of CoS 2 nanoparticles embedded in the hollow polyhedron of N‐doped carbon nanotubes (CoS 2 ‐NCNHP), which shows improved electrocatalytic performance for hydrogen evolution reaction (HER) due to the strong synergy effect and the peculiar hollow polyhedral structure. It only needs 158 and 192 mV vs. RHE to arrive the current density to 10 mA cm −2 in 0.5 M H 2 SO 4 and 1 M KOH, and the activity can be kept for at least of 24 h with negligible loss. Density Functional Theory (DFT) calculations suggest more electrons with quickly round‐trip transferred rate in CoS 2 ‐NCNHP can undergo the HER process, CoS 2 ‐NCNHP surface shows optimal interaction with H*, and greatly accelerates the dissociation of H 2 O molecules. Moreover, CoS 2 ‐NCNHP worked as cathode sulfur host material for aluminum‐sulfur (Al−S) batteries, it exhibits a remarkable increase in the discharge specific capacity, the specific discharge capacity of the battery in the first circle is 515.46 mAh g −1 at 1 A g −1 , and the specific discharge capacity can still be maintained at 110 mAh g −1 after 100 cycles, along with a notable reduction in battery polarization owning to the hollow structure enhanced sulfur utilization.
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