New insight into MOS gate stack formations on Ge and SiGe from thermodynamics, reaction kinetics and nanoscale engineering

Author(s):  
Akira Toriumi ◽  
Tomonori Nishimura
Hyomen Kagaku ◽  
2012 ◽  
Vol 33 (11) ◽  
pp. 628-633
Author(s):  
Shinichi TAKAGI ◽  
Noriyuki TAOKA ◽  
Rena SUZUKI ◽  
Masafumi YOKOYAMA ◽  
Sang-Hyeon KIM ◽  
...  

2020 ◽  
Vol 131 (2) ◽  
pp. 707-735
Author(s):  
Tri Nguyen ◽  
Cam Loc Luu ◽  
Hong Phuong Phan ◽  
Phung Anh Nguyen ◽  
Thi Thuy Van Nguyen

2003 ◽  
Vol 770 ◽  
Author(s):  
Andrew R. Wilkinson ◽  
Robert G. Elliman

AbstractHydrogen passivation of non-radiative defects increases the luminescence intensity from silicon nanocrystals. In this study, photoluminescence (PL) and time-resolved PL were used to investigate the chemical kinetics of the hydrogen passivation process. Isochronal and isothermal annealing sequences were used to determine the reaction kinetics for the absorption and desorption of hydrogen, using the generalised consistent simple thermal (GST) model proposed by Stesmans for Pb defects at planar Si/SiO2 interfaces. This included determination of the activation energies and rate constants for the forward and reverse reactions as well as the associated spread in activation energies. The reaction kinetics determined from such measurements were found to be in excellent agreement with those for the passivation of Pb defects at planar Si/SiO2 interfaces, suggesting the nanocrystal emission process is also limited by such defects. These results provide useful model data as well as insight into the processing conditions needed to achieve optimum passivation in H2. As an extension to the work, a preliminary study into passivation by atomic hydrogen was pursued via a post-metallization Al anneal (alneal). A considerable gain in luminescence efficiency was achieved over the previously optimised passivation in H2.


2021 ◽  
Author(s):  
Gregory Peter Horne ◽  
Travis Grimes ◽  
Peter Zalupski ◽  
David Meeker ◽  
Thomas Albrecht-Schoenzart ◽  
...  

Insight into the effects of radiolytic processes on the actinides is critical for advancing our understanding of their solution chemistry because the behaviour of these elements cannot be easily separated...


Polyhedron ◽  
2021 ◽  
Vol 196 ◽  
pp. 114952
Author(s):  
Periyakaruppan Karuppasamy ◽  
Dharmaraj Thiruppathi ◽  
Jeyaraj Vijaya Sundar ◽  
Muniyandi Ganesan ◽  
Thangamuthu Rajendran ◽  
...  

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