Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
Kim, Yoon-Sung
Hwang, In-Sung
Kim, Sun-Jung
Lee, Choong-Yong
and
Lee, Jong-Heun
2008.
CuO nanowire gas sensors for air quality control in automotive cabin.
Sensors and Actuators B: Chemical,
Vol. 135,
Issue. 1,
p.
298.
Gonçalves, A. M. B.
Campos, L. C.
Ferlauto, A. S.
and
Lacerda, R. G.
2009.
On the growth and electrical characterization of CuO nanowires by thermal oxidation.
Journal of Applied Physics,
Vol. 106,
Issue. 3,
Shin, Ho Sun
Song, Jae Yong
and
Yu, Jin
2009.
Template-assisted electrochemical synthesis of cuprous oxide nanowires.
Materials Letters,
Vol. 63,
Issue. 3-4,
p.
397.
Yoo, Jung Joon
Song, Jae Yong
and
Yu, Jin
2010.
Enhancement of electrical properties in the cuprous oxide films doped with single wall carbon nanotubes.
p.
1335.
Shi, Wenwu
and
Chopra, Nitin
2010.
CuO nanowire–Co3O4 nanoparticle heterostructures and their vertically aligned and horizontally suspended architectures.
MRS Proceedings,
Vol. 1256,
Issue. ,
Yuan, Lu
Wang, Yiqian
Mema, Rediola
and
Zhou, Guangwen
2011.
Driving force and growth mechanism for spontaneous oxide nanowire formation during the thermal oxidation of metals.
Acta Materialia,
Vol. 59,
Issue. 6,
p.
2491.
Hansen, Benjamin J.
Chan, Hoi-lam (Iris)
Lu, Jian
Lu, Ganhua
and
Chen, Junhong
2011.
Short-circuit diffusion growth of long bi-crystal CuO nanowires.
Chemical Physics Letters,
Vol. 504,
Issue. 1-3,
p.
41.
Shi, Wenwu
and
Chopra, Nitin
2011.
Surfactant-free synthesis of novel copper oxide (CuO) nanowire–cobalt oxide (Co3O4) nanoparticle heterostructures and their morphological control.
Journal of Nanoparticle Research,
Vol. 13,
Issue. 2,
p.
851.
Mema, Rediola
Yuan, Lu
Du, Qingtian
Wang, Yiqian
and
Zhou, Guangwen
2011.
Effect of surface stresses on CuO nanowire growth in the thermal oxidation of copper.
Chemical Physics Letters,
Vol. 512,
Issue. 1-3,
p.
87.
Chen, Mingji
Yue, Yumei
and
Ju, Yang
2012.
Growth of metal and metal oxide nanowires driven by the stress-induced migration.
Journal of Applied Physics,
Vol. 111,
Issue. 10,
Yuan, Lu
Wang, Yiqian
Cai, Rongsheng
Jiang, Qike
Wang, Jianbo
Li, Boquan
Sharma, Anju
and
Zhou, Guangwen
2012.
The origin of hematite nanowire growth during the thermal oxidation of iron.
Materials Science and Engineering: B,
Vol. 177,
Issue. 3,
p.
327.
Shi, Wenwu
and
Chopra, Nitin
2012.
Controlled Fabrication of Photoactive Copper Oxide–Cobalt Oxide Nanowire Heterostructures for Efficient Phenol Photodegradation.
ACS Applied Materials & Interfaces,
Vol. 4,
Issue. 10,
p.
5590.
Shalav, A.
and
Elliman, R.G.
2013.
Volatile CuOH as a precursor for the growth of CuO nanowires.
Microelectronic Engineering,
Vol. 108,
Issue. ,
p.
200.
Srivastava, Himanshu
Ganguli, Tapas
Deb, S. K.
Sant, Tushar
Poswal, H. K.
and
Sharma, Surinder M.
2013.
In-situ energy dispersive x-ray diffraction study of the growth of CuO nanowires by annealing method.
Journal of Applied Physics,
Vol. 114,
Issue. 14,
Li, Yuan
and
Chopra, Nitin
2013.
Fabrication of thermally-conductive carbon nanotubes-copper oxide heterostructures.
MRS Proceedings,
Vol. 1543,
Issue. ,
p.
119.
Ozkan, Tanil
Shaddock, David
Lipkin, Don M
and
Chasiotis, Ioannis
2014.
Mechanical strengthening, stiffening, and oxidation behavior of pentatwinned Cu nanowires at near ambient temperatures.
Materials Research Express,
Vol. 1,
Issue. 3,
p.
035020.
Li, Xiaoxin
Li, Xiaogan
Chen, Ning
Li, Xinye
Zhang, Jianwei
Yu, Jun
Wang, Jing
Tang, Zhenan
and
Xie, Jianping
2014.
CuO‐In2O3Core‐Shell Nanowire Based Chemical Gas Sensors.
Journal of Nanomaterials,
Vol. 2014,
Issue. 1,
Zhang, Qiaobao
Xu, Daguo
Zhou, Xiang
Wu, Xianwen
and
Zhang, Kaili
2014.
In Situ Synthesis of CuO and Cu Nanostructures with Promising Electrochemical and Wettability Properties.
Small,
Vol. 10,
Issue. 5,
p.
935.
Ţălu, Ştefan
Solaymani, Shahram
Bramowicz, Miroslaw
Kulesza, Slawomir
Ghaderi, Atefeh
Shahpouri, Samaneh
and
Elahi, Seyed Mohammad
2016.
Effect of electric field direction and substrate roughness on three-dimensional self-assembly growth of copper oxide nanowires.
Journal of Materials Science: Materials in Electronics,
Vol. 27,
Issue. 9,
p.
9272.
Shapouri, Samaneh
Elahi, Seyed Mohammad
Dejam, Laya
Bagheri, Zohreh
Ghaderi, Atefeh
and
Solaymani, Shahram
2018.
Micromorphology and Optical Bandgap Characterization of Copper Oxide Nanowires.
Silicon,
Vol. 10,
Issue. 5,
p.
1911.