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Sökning: WFRF:(Jiang Zhihua) > (2020) > SiNx films and memb...

SiNx films and membranes for photonic and MEMS applications

Xiong, Wenjuan (författare)
Chinese Academy of Sciences, Beijing, China; University of Chinese Academy of Sciences, Beijing, China
Jiang, Haojie (författare)
Chinese Academy of Sciences, Beijing, China
Li, Tingting (författare)
Chinese Academy of Sciences, Beijing, China
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Zhang, Peng (författare)
Chinese Academy of Sciences, Beijing, China
Xu, Qing (författare)
Chinese Academy of Sciences, Beijing, China; University of Science and Technology of China, Hefei, People’s Republic of China
Zhao, Xuewei (författare)
Chinese Academy of Sciences, Beijing, China; University of Science and Technology of China, Hefei, People’s Republic of China
Wang, Guilei (författare)
Chinese Academy of Sciences, Beijing, China
Liu, Yaodong (författare)
Chinese Academy of Sciences, Beijing, China
Luo, Ying (författare)
Chinese Academy of Sciences, Beijing, China
Li, Zhihua (författare)
Chinese Academy of Sciences, Beijing, China
Li, Junfeng (författare)
Chinese Academy of Sciences, Beijing, China
Yu, Jinzhong (författare)
Chinese Academy of Sciences, Beijing, China
Chao, Zhao (författare)
Chinese Academy of Sciences, Beijing, China
Wang, Wenwu (författare)
Chinese Academy of Sciences, Beijing, China
Radamson, Henry H. (författare)
Mittuniversitetet,Institutionen för elektronikkonstruktion,Chinese Academy of Sciences, Beijing, China; University of Chinese Academy of Sciences, Beijing, People’s Republic of China
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 (creator_code:org_t)
2019-04-01
2020
Engelska.
Ingår i: Journal of materials science. Materials in electronics. - : Springer Science and Business Media LLC. - 0957-4522 .- 1573-482X. ; 31, s. 90-97
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
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  • This work presents a novel process to form SiN x films and process for membranes with excellent mechanical properties for micro-electro-mechanical systems application as well as integration as IR waveguide for photonic application. The SiN x films were fabricated in SiNgen apparatus which is a single wafer chamber equipment compared to conventional low pressure chemical vapor deposition furnace process. The films showed low stress, good mechanical properties, but the synthesis also eradicates the issues of particle contamination. Through optimizing of the growth parameters and post annealing profile, low stress (40 Mpa) SiN x film could be finally deposited when annealing temperature rose up to 1150 °C. The stress relaxation is a result of more Si nano-crystalline which was formed during annealing, according to the FTIR results. The mechanical properties, Young’s modulus and hardness, were 210 Gpa and 20 Gpa respectively. For the waveguide application, a stack of three layers, SiO 2 /SiN x /SiO 2 was formed where the optimized layer thicknesses were used for minimum optical loss according to simulation feedback. After deposition of the first two layers in the stack, the samples were annealed in range of 900–1150 °C in order to release the stress. Chemical mechanical polish technique was applied to planarize the nitride layer prior to the oxide cladding layer. Such wafers can be used to bond to Si or Ge to manufacture advanced substrates.

Ämnesord

TEKNIK OCH TEKNOLOGIER  -- Materialteknik -- Annan materialteknik (hsv//swe)
ENGINEERING AND TECHNOLOGY  -- Materials Engineering -- Other Materials Engineering (hsv//eng)

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