Synthesis and photoelectrochemical property of PbS quantum dots modified WO3 nanoflowers
Publication
, Conference
Zhong, J; Li, X; Hu, B; Yuan, L; Feng, Y; Li, T; Song, T; Hu, J; Zhou, J
Published in: Ecs Transactions
January 1, 2013
PbS quantum dots modified WO3 nanoflowers were synthesized on conductive glass through a low-temperature hydrothermal process and a dip coating method. The photoelectrochenical properties of the structure were intensively studied. The results indicated that the structures exhibited an excellent photoelectrochemical performance with a maximum photocurrent density of ∼1.8 mA/cm2 and a maximum photoconversion efficiency of ∼1.3% under solar light (AM 1.5, 100 mW/cm2) illumination, highlighting its enormous potential in hydrogen generation. © The Electrochemical Society.
Duke Scholars
Published In
Ecs Transactions
DOI
EISSN
1938-6737
ISSN
1938-5862
ISBN
9781607683544
Publication Date
January 1, 2013
Volume
50
Issue
6
Start / End Page
41 / 44
Citation
APA
Chicago
ICMJE
MLA
NLM
Zhong, J., Li, X., Hu, B., Yuan, L., Feng, Y., Li, T., … Zhou, J. (2013). Synthesis and photoelectrochemical property of PbS quantum dots modified WO3 nanoflowers. In Ecs Transactions (Vol. 50, pp. 41–44). https://doi.org/10.1149/05006.0041ecst
Zhong, J., X. Li, B. Hu, L. Yuan, Y. Feng, T. Li, T. Song, J. Hu, and J. Zhou. “Synthesis and photoelectrochemical property of PbS quantum dots modified WO3 nanoflowers.” In Ecs Transactions, 50:41–44, 2013. https://doi.org/10.1149/05006.0041ecst.
Zhong J, Li X, Hu B, Yuan L, Feng Y, Li T, et al. Synthesis and photoelectrochemical property of PbS quantum dots modified WO3 nanoflowers. In: Ecs Transactions. 2013. p. 41–4.
Zhong, J., et al. “Synthesis and photoelectrochemical property of PbS quantum dots modified WO3 nanoflowers.” Ecs Transactions, vol. 50, no. 6, 2013, pp. 41–44. Scopus, doi:10.1149/05006.0041ecst.
Zhong J, Li X, Hu B, Yuan L, Feng Y, Li T, Song T, Hu J, Zhou J. Synthesis and photoelectrochemical property of PbS quantum dots modified WO3 nanoflowers. Ecs Transactions. 2013. p. 41–44.
Published In
Ecs Transactions
DOI
EISSN
1938-6737
ISSN
1938-5862
ISBN
9781607683544
Publication Date
January 1, 2013
Volume
50
Issue
6
Start / End Page
41 / 44