Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
Luque, Antonio
and
Martí, Antonio
2007.
Advances in the Research of the Intermediate Band (IB) Solar Cell.
MRS Proceedings,
Vol. 1031,
Issue. ,
Tian, Bozhi
Zheng, Xiaolin
Kempa, Thomas J.
Fang, Ying
Yu, Nanfang
Yu, Guihua
Huang, Jinlin
and
Lieber, Charles M.
2007.
Coaxial silicon nanowires as solar cells and nanoelectronic power sources.
Nature,
Vol. 449,
Issue. 7164,
p.
885.
Pancholi, A.
Zhang, Y.C.
Boyle, J.
Stoleru, V.G.
Hanna, M.C.
Norman, A.G.
Bremner, S.
and
Honsberg, C.
2008.
Quantum dot materials for solar cell applications: effects of strain-reducing and strain-compensated barriers on dot structural and optical properties.
p.
STuE1.
Wakayama, Cherry Y.
Kohn, Wolf
Zabinsky, Zelda B.
and
Richard Shi, C.J.
2008.
Phase control of a nano-structured light-harvesting architecture.
Nonlinear Analysis: Hybrid Systems,
Vol. 2,
Issue. 4,
p.
1098.
Kirchartz, Thomas
Mattheis, Julian
and
Rau, Uwe
2008.
Detailed balance theory of excitonic and bulk heterojunction solar cells.
Physical Review B,
Vol. 78,
Issue. 23,
Franceschetti, Alberto
and
Zhang, Yong
2008.
Multiexciton Absorption and Multiple Exciton Generation in CdSe Quantum Dots.
Physical Review Letters,
Vol. 100,
Issue. 13,
van Hest, M. F. A. M.
and
Ginley, D. S.
2008.
Solution Processing of Inorganic Materials.
p.
449.
Franceschetti, A.
Lany, S.
and
Bester, G.
2008.
Quantum-dot intermediate-band solar cells with inverted band alignment.
Physica E: Low-dimensional Systems and Nanostructures,
Vol. 41,
Issue. 1,
p.
15.
Wakayama, Cherry
Kohn, Wolf
Zabinsky, Zelda
and
Shi, Richard
2008.
A quantum-dot light-harvesting architecture using deterministic phase control.
p.
332.
Nemchinov, Alexander
Kirsanova, Maria
Hewa-Kasakarage, Nishshanka N.
and
Zamkov, Mikhail
2008.
Synthesis and Characterization of Type II ZnSe/CdS Core/Shell Nanocrystals.
The Journal of Physical Chemistry C,
Vol. 112,
Issue. 25,
p.
9301.
Wang, Jun
Xu, Jun
Goodman, Matthew D.
Chen, Ying
Cai, Min
Shinar, Joseph
and
Lin, Zhiqun
2008.
A simple biphasic route to water soluble dithiocarbamate functionalized quantum dots.
Journal of Materials Chemistry,
Vol. 18,
Issue. 27,
p.
3270.
Ginley, David
Green, Martin A.
and
Collins, Reuben
2008.
Solar Energy Conversion Toward 1 Terawatt.
MRS Bulletin,
Vol. 33,
Issue. 4,
p.
355.
Swe, N. Chit
Tangmattajittakul, O.
Suraprapapich, S.
Changmoang, P.
Thainoi, S.
Wissawinthanon, C.
Kanjanachuchai, S.
Ratanathammaphan, S.
and
Panyakeow, S.
2008.
Improved quantum confinement of self-assembled high-density InAs quantum dot molecules in AlGaAs∕GaAs quantum well structures by molecular beam epitaxy.
Journal of Vacuum Science & Technology B: Microelectronics and Nanometer Structures Processing, Measurement, and Phenomena,
Vol. 26,
Issue. 3,
p.
1100.
Timmerman, D.
Izeddin, I.
Stallinga, P.
Yassievich, I. N.
and
Gregorkiewicz, T.
2008.
Space-separated quantum cutting with silicon nanocrystals for photovoltaic applications.
Nature Photonics,
Vol. 2,
Issue. 2,
p.
105.
Gandhi, Jateen
Clark, Kevin
and
Kirk, Wiley P.
2008.
InAs quantum dots based solar cell: Multi-excitons.
p.
1.
Kempa, Thomas J.
Tian, Bozhi
Kim, Dong Rip
Hu, Jinsong
Zheng, Xiaolin
and
Lieber, Charles M.
2008.
Single and Tandem Axial p-i-n Nanowire Photovoltaic Devices.
Nano Letters,
Vol. 8,
Issue. 10,
p.
3456.
Slaveykova, Vera I.
and
Startchev, Konstantin
2009.
Effect of natural organic matter and green microalga on carboxyl-polyethylene glycol coated CdSe/ZnS quantum dots stability and transformations under freshwater conditions.
Environmental Pollution,
Vol. 157,
Issue. 12,
p.
3445.
Tian, Bozhi
Kempa, Thomas J.
and
Lieber, Charles M.
2009.
Single nanowire photovoltaics.
Chem. Soc. Rev.,
Vol. 38,
Issue. 1,
p.
16.
Chang, Jieun
Liu, Chao
and
Heo, Jong
2009.
Optical properties of PbSe quantum dots doped in borosilicate glass.
Journal of Non-Crystalline Solids,
Vol. 355,
Issue. 37-42,
p.
1897.
Navarro, Divina A. G.
Watson, David F.
Aga, Diana S.
and
Banerjee, Sarbajit
2009.
Natural Organic Matter-Mediated Phase Transfer of Quantum Dots in the Aquatic Environment.
Environmental Science & Technology,
Vol. 43,
Issue. 3,
p.
677.