리튬이온전지 음극 소재 응용을 위한 ZnO 나노입자 위 CNT의 직접 성장과 전기화학 특성 평가

Direct growth of CNTs on ZnO nanoparticles and their application as lithium-ion battery anodes

초록

Zinc oxide (ZnO) is a promising anode material for lithium-ion batteries (LIBs) due to its high theoretical capacity (~987 mAh/g) but suffers from poor electrical conductivity and structural degradation. To address these issues, carbon nanotubes (CNTs) were directly grown on the surface of ZnO particles using a rotary chemical vapor deposition (RCVD) system. By varying the growth temperature and time, the quantity and crystallinity of the CNTs were effectively controlled. SEM and TGA analyses revealed a decrease in CNT quantity with increasing CVD temperature, while Raman spectroscopy indicated enhanced crystallinity of the CNTs. Electrochemical impedance spectroscopy and differential capacity (dQ/dV) analyses confirmed that the CNTs enhance interfacial charge transfer and structural reversibility. Our results demonstrate that direct growth of CNTs on ZnO via RCVD system offers a rational and scalable strategy to improve the electrochemical performance of ZnO-based anodes.

키워드

Zinc oxideCarbon nanotubesRotary CVDLithium-ion batteryElectrochemical performance.
제목
리튬이온전지 음극 소재 응용을 위한 ZnO 나노입자 위 CNT의 직접 성장과 전기화학 특성 평가
제목 (타언어)
Direct growth of CNTs on ZnO nanoparticles and their application as lithium-ion battery anodes
저자
강수혁이종환정구환
DOI
10.5695/JSSE.2025.58.5.275
발행일
2025-10
유형
Y
저널명
한국표면공학회지
58
5
페이지
275 ~ 282