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  4. High-temperature annealing effects on molybdenum-silicon contact substrate for vertically structured silicon quantum-dot solar cells
 
research article

High-temperature annealing effects on molybdenum-silicon contact substrate for vertically structured silicon quantum-dot solar cells

Jia, Xuguang
•
Lin, Ziyun
•
Yang, Terry Chien-Jen  
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March 1, 2019
Applied Nanoscience

This paper studies the applicability of sputtered Molybdenum (Mo) thin films on silicon wafers (Mo-Si) to act as contact substrates for vertically structured Si quantum-dot (QD) solar cells. The compatibility of Mo-Si contact substrate with Si QD material under different annealing temperatures is examined. Cross sections of annealed samples show well-defined interfaces without metal penetration into the Si QD bilayer regions. Through comparing samples deposited on Mo-Si substrates with those on fused-silica substrates, we identified from Raman spectra that the presence of Mo is advantageous for the Si-crystallization process and in fact provide beneficial passivation effects on the Si QD material according to changes in photoluminescence intensity. This allows us to conclude that Mo thin films are compatible with the sputter-anneal process, and verify the feasibility of using the proposed Mo-Si contact scheme for future fabrication of Si QD solar cells.

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Type
research article
DOI
10.1007/s13204-018-0893-7
Web of Science ID

WOS:000464739600001

Author(s)
Jia, Xuguang
Lin, Ziyun
Yang, Terry Chien-Jen  
Zhang, Tian
Puthen-Veettil, Binesh
Wu, Lingfeng
Ding, Jianning
Conibeer, Gavin
Perez-Wurfl, Ivan
Date Issued

2019-03-01

Published in
Applied Nanoscience
Volume

9

Issue

2

Start page

135

End page

142

Subjects

Nanoscience & Nanotechnology

•

Science & Technology - Other Topics

•

si quantum dots

•

solar cells

•

molybdenum

•

high-temperature annealing

•

si nanocrystals

•

microcrystalline silicon

•

raman

Editorial or Peer reviewed

REVIEWED

Written at

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Available on Infoscience
June 18, 2019
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/157740
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