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用于高效稳定锂离子存储的镍硼/还原氧化石墨烯的合成

Synthesis of nickel-boron/reduced graphene oxide for efficient and stable lithium-ion storage.

作者信息

Im Gahyeon, Yun Dami, Kim Hyun Bin, Lim Youn-Mook, Oh Seung-Hwan, Kim Huisu, Kim Byungnam, Eom KwangSup, Yun Jin-Mun

机构信息

Advanced Battery Development Team 3, Hyundai Motor Company, Hwaseong, 18280, Republic of Korea.

Radiation Fusion Research Division, Advanced Radiation Technology Institute (ARTI), Korea Atomic Energy Research Institute (KAERI), 29 Geumgu-gil, Jeongeup-si, Jeollabuk-do, 56212, Republic of Korea.

出版信息

Heliyon. 2024 Dec 7;10(24):e41074. doi: 10.1016/j.heliyon.2024.e41074. eCollection 2024 Dec 30.

Abstract

Electrode material capacities and cycle performances must improve for large-scale applications such as energy storage systems. Numerous investigations have developed cathode materials to improve lithium-ion batteries (LIBs) performance: however, few have examined new anode materials. In this study, we synthesized a Ni-B/reduced graphene oxide (RGO) composites via a simple chemical reaction method to enhance the stability of electrodes in LIBs. A well-dispersed B, as a component of Ni-B composite, shortened the diffusion distance of lithium ion and allowed for the reversible storage and release of lithium ions. The incorporation of RGO significantly enhanced the dispersion of the Ni-B particles, preventing aggregation and enhancing the electrochemical performance. The long-term cyclic capacity of Ni-B/RGO reached approximately 1200 mAh g at 400 mA g. Moreover, well-dispersed B from the reduction of BO enhanced reactions with Li ions, gradually increasing the capacity. After several cycles, Ni-B/RGO maintained its structure without volume changes and with a uniform dispersion of elements. Therefore, Ni-B/RGO exhibited high stability over long cycles, leading to high reversibility. The combination of these features renders Ni-B/RGO a promising lithium storage material for LIBs.

摘要

对于储能系统等大规模应用而言,电极材料的容量和循环性能必须得到提升。众多研究致力于开发阴极材料以提高锂离子电池(LIBs)的性能:然而,很少有研究考察新型阳极材料。在本研究中,我们通过一种简单的化学反应方法合成了镍硼/还原氧化石墨烯(RGO)复合材料,以增强LIBs中电极的稳定性。作为镍硼复合材料的一种成分,分散良好的硼缩短了锂离子的扩散距离,并允许锂离子进行可逆的存储和释放。还原氧化石墨烯的加入显著增强了镍硼颗粒的分散性,防止了团聚并提高了电化学性能。镍硼/还原氧化石墨烯在400 mA g下的长期循环容量达到约1200 mAh g。此外,硼从BO还原后分散良好,增强了与锂离子的反应,使容量逐渐增加。经过几个循环后,镍硼/还原氧化石墨烯保持其结构,没有体积变化且元素分散均匀。因此,镍硼/还原氧化石墨烯在长循环中表现出高稳定性,具有高可逆性。这些特性的结合使镍硼/还原氧化石墨烯成为一种有前景的LIBs锂存储材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/297d/11696628/8422a1fa42b6/gr1.jpg

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