Intercalation is an effective method to improve and modulate properties of two-dimensional materials. Even so, spatially controlled intercalation at atomic scale, which is important to introduce and modulated properties, has not been successful due to difficulties in controlling the diffusion of intercalants. Here, we show formation of angstrom-wide conductive channels (~4.3 A) in black phosphorus by Cu intercalation. The atomic structure, resultant microstructural effects, intercalation mechanism, and local variations of electronic properties modulated in black phosphorus by Cu intercalation were investigated extensively by transmission electron microscopy including in situ observation, DFT calculation, and conductive atomic force microscopy.
@article{arxiv.2101.08447,
title = {Angstrom-wide conductive channels in black phosphorus by Cu intercalation},
author = {Suk Woo Lee and Lu Qiu and Jong Chan Yoon and Yohan Kim and Da Li and Inseon Oh and Gil-Ho Lee and Jung-Woo Yoo and Hyung-Joon Shin and Feng Ding and Zonghoon Lee},
journal= {arXiv preprint arXiv:2101.08447},
year = {2021}
}