Facile Synthesis and Size Control of II-VI Nanowires Using Bismuth Salts

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2009 ◽  
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Thomas H. Kosel ◽  
Masaru Kuno
Nanoscale ◽  
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Kangkang Men ◽  
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Li Wang ◽  
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...  

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Andrew S. Iskandar ◽  
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Susan M. Kauzlarich

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Haoyan Cheng ◽  
Shan Zhou ◽  
Minghao Xie ◽  
Kyle D. Gilroy ◽  
...  

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Ping Xu ◽  
Debby Mangelings ◽  
Chun Yang ◽  
Xiaoya Hu

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Yingchao Yang ◽  
Caifen Wang ◽  
Li Wu ◽  
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...  

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Longhai Piao ◽  
Cheol-Hee Park ◽  
Young Soo Lim ◽  
Young Rag Do ◽  
...  

Author(s):  
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Lee E. Rumaner ◽  
Mark G. Benz

The intermetallic compound Nb3Sn is a type-II superconductor of interest because it has high values of critical current density Jc in high magnetic fields. One method of forming this compound involves diffusion of Sn into Nb foil containing small amounts of Zr and O. In order to maintain high values of Jc, it is important to keep the grain size in the Nb3Sn as small as possible, since the grain boundaries act as flux-pinning sites. It has been known for many years that Zr and O were essential to grain size control in this process. In previous work, we have shown that (a) the Sn is transported to the Nb3Sn/Nb interface by liquid diffusion along grain boundaries; (b) the Zr and O form small ZrO2 particles in the Nb3Sn grains; and (c) many very small Nb3Sn grains nucleate from a single Nb grain at the reaction interface. In this paper we report the results of detailed studies of the Nb3Sn/Nb3Sn, Nb3Sn/Nb, and Nb3Sn/ZrO2 interfaces.


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pp. 828-830 ◽  
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Weihong Wu ◽  
Weiwei Zhang ◽  
Luyao Cheng ◽  
Yunhong Jiao ◽  
...  

Synlett ◽  
1991 ◽  
Vol 1991 (09) ◽  
pp. 725-727 ◽  
Author(s):  
Takeshi Shimizu ◽  
Sayoko Hiranuma ◽  
Zhao-hui Qian ◽  
Hirosuke Yoshioka

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