DocumentCode :
1218424
Title :
Effective-Work-Function Control by Varying the TiN Thickness in Poly-Si/TiN Gate Electrodes for Scaled High- k CMOSFETs
Author :
Kadoshima, Masaru ; Matsuki, Takeo ; Miyazaki, Seiichi ; Shiraishi, Kenji ; Chikyo, Toyohiro ; Yamada, Keisaku ; Aoyama, Takayuki ; Nara, Yasuo ; Ohji, Yuzuru
Author_Institution :
Semicond. Leading Edge Technol., Inc., Tsukuba
Volume :
30
Issue :
5
fYear :
2009
fDate :
5/1/2009 12:00:00 AM
Firstpage :
466
Lastpage :
468
Abstract :
We have investigated the controllability of the effective work function (phim,eff) of TiN as a work-function-determining metal (WFM) for various gate-electrode structures in HfSiON MOSFETs. phim,eff was controllable from 4.7 to 4.44 eV by changing the TiN thickness from 30 to 2 nm in poly-Si/TiN gate electrodes, without any distinct increase in EOT. Therefore, thin-TiN and thick-TiN WFMs are preferred for the reduction in threshold voltage in nMOSFETs and pMOSFETs with poly-Si/TiN gate electrodes, respectively. A similar controllability was not observed with W/TiN gate electrodes but was evident with W/TaSiN/TiN gate electrodes. This means that controllability is a characteristic of metal gate electrodes with a structure including a Si-rich layer (such as poly-Si and TaSiN)/TiN. It is considered that Ti suboxides, which increase phim,eff as a thin insulator with negative fixed charges, or interface dipoles in the TiN/HfSiON interface, are reduced by oxidation of the Si-rich layer, producing the required result of phim,eff decrease when the TiN thickness becomes as thin as 2 nm.
Keywords :
MOSFET; controllability; insulators; silicon; titanium compounds; CMOSFET; HfSiON interface; Si-TiN; controllability; gate electrodes; gate-electrode structures; nMOSFET; pMOSFET; threshold voltage reduction; work-function-determining metal; Effective work function; HfSiON; TiN thickness; flatband voltage; metal gate; poly-Si/TiN;
fLanguage :
English
Journal_Title :
Electron Device Letters, IEEE
Publisher :
ieee
ISSN :
0741-3106
Type :
jour
DOI :
10.1109/LED.2009.2016585
Filename :
4808212
Link To Document :
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