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Silicidation in Ni-Si system
會議論文集

Silicidation in Ni-Si system

S.Y. Tan, C.-Y. Hu, H.-C. Chiu, C.-W. Feng, I.-T. Chen, H.-H. Chen 和 W.-F. Wu
IEEE Conference on Electron Devices and Solid-State Circuits 2007, EDSSC 2007, 頁碼.165-168
2007
Web of Science ID: WOS:000254170700043

摘要

Phase interfaces Rapid thermal annealing Semiconductor devices Sheet resistance Silicides X ray diffraction Silicidation Suicide (NiSi) Suicide formation Thermal annealing Thin films
Suicide formation induced by thermal annealing in Ni/Si thin film system has been investigated using glancing incidence X-ray diffraction. Suicide formation takes place at 600°C with Ni2Si, NiSi and NiSi 2 phases co-existing with Ni. Complete conversion of intermediate suicide phases to the final NiSi2 phase takes place at 900°C. A comparison of the experimental results in terms of annealing temperature, Ni thickness, and dopant impurities with Ni-Si phases is presented. Nickel suicide (NiSi) is emerging to be the choice material for contact application in semiconductor device processing for sub_65 nm technology node and beyond. The focus of present work is to facilitate better understanding of the influence of thermal budget on nickel suicide solid-state reaction. Requirements for low temperature anneal and improving within wafer sheet resistance uniformity pose challenges for conventional lamp-based rapid thermal processing (RTP) due to lamp response effects on temperature controllability. Evolution of the nickel-rich suicide phase as a function of temperature is recorded using X-ray diffraction (XRD) techniques. It is postulated that lowering the Ni2Si/Si interface energy favors the delay of the agglomeration of the NiSi. © 2007 IEEE.

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https://www.scopus.com/inward/record.uri?eid=2-s2.0-43049173488&doi=10.1109%2fEDSSC.2007.4450088&partnerID=40&md5=6e45c4b67aae069c1cfe638dc8c8fcd8檢視

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