A universal 2D-on-SiC platform for heterogeneous integration of epitaxial III-N membranes

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초록

Nonconventional epitaxial techniques, such as van der Waals epitaxy and remote epitaxy, have attracted substantial attention in the semiconductor research community for their capability to repeatedly produce high-quality freestanding films from a single mother wafer. Successful implementation of these techniques depends on creating a robust, uniform two-dimensional (2D) material surface. The conventional method for fabricating graphene on silicon carbide (SiC) is high-temperature graphitization. However, the extremely high temperature required for silicon sublimation (typically above 1500°C) causes step bunching, forming nonuniform multilayer graphene stripes and an unfavorable surface morphology for epitaxial growth. Here, we developed a wafer-scale graphitization technique that allows fast synthesis of single-crystalline graphene at low temperatures by metal-assisted graphitization. In contrast to previous reports, we found annealing conditions enabling SiC dissociation while avoiding silicide formation, producing uniform single-crystalline graphene while maintaining the pristine surface morphology of the substrate. We successfully produce high-quality freestanding single-crystalline III-N (AlN and GaN) membranes on graphene/SiC via the 2D material-based layer transfer technique.

키워드

FEW-LAYER GRAPHENE; SILICON-CARBIDE; INTERFACIAL REACTIONS; RELEASE LAYER; GROWTH; CARBON; DYNAMICS; GAN; CO
제목
A universal 2D-on-SiC platform for heterogeneous integration of epitaxial III-N membranes
저자
Kim, Sehyun; Lee, Hanjoo; Kim, Dong-gwan; Kim, Donghan; Kim, Seokgi; Kim, Hyunsoo; Ha, Seoyong; Yang, Hyunho; Jang, Yunsu; Yoon, Jangho; Lee, Byoung-tak; Lee, Jung-hee; Chung, Roy Byung Kyu; Park, Hongsik; Kim, Sungkyu; Lee, Taehoon; Kum, Hyun S.
DOI
10.1126/sciadv.adz3605
발행일
2025-11
유형
Article
저널명
Science Advances
권
11
호
47
페이지
eadz3605