@article{ART002220456},
author={김나래 and 안홍주 and Yun Yeongsu and Hyoung‑Joon Jin},
title={Li-ion battery anodes from ginkgo leaf-derived nanoporous carbons rich in redox-active heteroatoms},
journal={Carbon Letters},
issn={1976-4251},
year={2017},
volume={22},
pages={110-114}
TY - JOUR
AU - 김나래
AU - 안홍주
AU - Yun Yeongsu
AU - Hyoung‑Joon Jin
TI - Li-ion battery anodes from ginkgo leaf-derived nanoporous carbons rich in redox-active heteroatoms
JO - Carbon Letters
PY - 2017
VL - 22
IS - null
PB - Korean Carbon Society
SP - 110
EP - 114
SN - 1976-4251
AB -
KW - .
DO -
UR -
ER -
김나래, 안홍주, Yun Yeongsu and Hyoung‑Joon Jin. (2017). Li-ion battery anodes from ginkgo leaf-derived nanoporous carbons rich in redox-active heteroatoms. Carbon Letters, 22, 110-114.
김나래, 안홍주, Yun Yeongsu and Hyoung‑Joon Jin. 2017, "Li-ion battery anodes from ginkgo leaf-derived nanoporous carbons rich in redox-active heteroatoms", Carbon Letters, vol.22, pp.110-114.
김나래, 안홍주, Yun Yeongsu, Hyoung‑Joon Jin "Li-ion battery anodes from ginkgo leaf-derived nanoporous carbons rich in redox-active heteroatoms" Carbon Letters 22 pp.110-114 (2017) : 110.
김나래, 안홍주, Yun Yeongsu, Hyoung‑Joon Jin. Li-ion battery anodes from ginkgo leaf-derived nanoporous carbons rich in redox-active heteroatoms. 2017; 22 110-114.
김나래, 안홍주, Yun Yeongsu and Hyoung‑Joon Jin. "Li-ion battery anodes from ginkgo leaf-derived nanoporous carbons rich in redox-active heteroatoms" Carbon Letters 22(2017) : 110-114.
김나래; 안홍주; Yun Yeongsu; Hyoung‑Joon Jin. Li-ion battery anodes from ginkgo leaf-derived nanoporous carbons rich in redox-active heteroatoms. Carbon Letters, 22, 110-114.
김나래; 안홍주; Yun Yeongsu; Hyoung‑Joon Jin. Li-ion battery anodes from ginkgo leaf-derived nanoporous carbons rich in redox-active heteroatoms. Carbon Letters. 2017; 22 110-114.
김나래, 안홍주, Yun Yeongsu, Hyoung‑Joon Jin. Li-ion battery anodes from ginkgo leaf-derived nanoporous carbons rich in redox-active heteroatoms. 2017; 22 110-114.
김나래, 안홍주, Yun Yeongsu and Hyoung‑Joon Jin. "Li-ion battery anodes from ginkgo leaf-derived nanoporous carbons rich in redox-active heteroatoms" Carbon Letters 22(2017) : 110-114.