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Wafer-scale epitaxy growth of high-mobility p-type boron carbon nitride.
Nature · · Journal Article
Tseng, Huang + more
Abstract ↗AI summary
The abstract is read at the publisher; the summary is JClub's.
Wafer-scale monolayer boron carbon nitride achieves high-mobility p-type conduction with 100 cm²/V·s in 2D FETs, surpassing existing p-type semiconductors.
- Why it matters: Developing stable, high-performance p-type 2D semiconductors is essential for advancing CMOS technology, but current materials face challenges like orbital localization and hole scattering.
- What they did: The team engineered surface reactions of monomethyl ammonia borane and ammonia borane to control atom delivery, enabling wafer-scale epitaxial growth of uniform, high-quality BCN monolayers with a 1.90 eV bandgap.
- The result: This scalable, stable p-type BCN platform enables high-performance electronic devices and fills a critical gap for integrating complementary 2D electronics in three-dimensional systems.
The findingWhy it mattersWhat they didThe result
- 1 cites