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PMID: 41753485 已发表 · epublish 英语

Advances and Perspectives in Gate Dielectric Thin Films for 4H-SiC MOSFETs.

Materials (Basel, Switzerland) ·第 19 卷 ·第 4 期 ·2026-02-15

Bai Z, Liang J, Ding C, Zhou Z, Luo M, Gu L, Ma HP, Zhang QC

摘要

The performance and reliability of 4H-SiC Metal-Oxide-Semiconductor Field-Effect Transistors (MOSFETs) are largely determined by the material properties of gate dielectric films and the quality of the dielectric/SiC interface. This paper provides a systematic review of recent progress in gate dielectric engineering for 4H-SiC MOSFETs, with emphasis on SiO2-based gate dielectrics and high-dielectric-constant (high-k) gate dielectrics. First, for conventional thermally grown SiO2/SiC systems, the effects of interface nitridation, gate oxide doping, and surface pretreatment techniques are comprehensively discussed. The influence mechanisms of these processes on carbon-related interface defects, interface state density and field-effect mobility are analyzed, and the advances in related research are summarized. Second, the application of high-k gate dielectrics, including Al2O3, HfO2, ZrO2, and stacked dielectric structures, in SiC MOS devices is systematically reviewed. The advantages of these materials in reducing equivalent oxide thickness, increasing gate capacitance, suppressing leakage current, and improving thermal stability are highlighted. In addition, interface defects and electrical characteristics associated with different high-k gate dielectrics are comparatively evaluated. Finally, future research directions are discussed, including in situ interface engineering based on atomic layer deposition, dopant modulation, and heterogeneous gate dielectric structures. These approaches show strong potential for achieving high mobility, low loss, and high reliability in advanced 4H-SiC power MOSFETs.

关键词
ALD SiC MOSFET SiO2 high-k interfaces
文献信息
期刊
Materials (Basel, Switzerland)
期刊简称
Materials (Basel)
ISSN
1996-1944
发表日期
2026-02-15
语言
英语
国家/地区
Switzerland
NLM ID
101555929
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