Enhanced p-type GaN Ohmic contacts through strategic metal schemes and annealing

  • Kim, Donghan; 
  • Moon, Soo-Young; 
  • Bae, Sung-Bum; 
  • Kwak, Hyeon-Tak; 
  • Park, Hongsik; 
  • 외 1명
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12

초록

To enhance the efficiency and performance of p-type GaN-based power devices (diode, MOSFET) and p-channel transistors (p-FET), forming an Ohmic contact with low specific contact resistance (rho(c)) at p-GaN can be an effective way. However, the specific contact resistance values of p-GaN remain limited to the range of mid-10(-2) Omega cm(2) due to the low activation ratio of Mg dopants and high work function. Here, we propose an Ohmic contact method using a Pd-based metal stack to achieve lower specific contact resistance compared to conventional p-GaN contact metals such as Ni/Au or Pt/Au. A low specific contact resistance of 1.08 x 10(-5) Omega cm(2) was demonstrated for p-GaN by annealing a Pd-based tri-layer metal contact in an oxygen-rich ambient with an optimized Pd thickness. The mechanism driving this low specific contact resistance was investigated using secondary ion mass spectroscopy, transmission electron microscopy, x-ray diffraction, and x-ray photoelectron spectroscopy, which indicated the mutual diffusion of Ni, Pd, and Ga atoms within the metal alloy. A NiO layer was formed on the top of the metal alloy, and Pd-Ga compounds were formed at the metal/p-GaN interface through mutual diffusion of atoms. This process increased the number of Ga vacancies in p-GaN, playing a crucial role in reducing its contact resistance.

키워드

OXIDIZED NI/AU; LOW-RESISTANCE; OXYGEN; POWER; TECHNOLOGIES; ACTIVATION; MECHANISM
제목
Enhanced p-type GaN Ohmic contacts through strategic metal schemes and annealing
저자
Kim, Donghan; Moon, Soo-Young; Bae, Sung-Bum; Kwak, Hyeon-Tak; Park, Hongsik; Lee, Hyung-Seok
DOI
10.1063/5.0249410
발행일
2025-03
유형
Article
저널명
Applied Physics Letters
권
126
호
12