Zobrazeno 1 - 10
of 25
pro vyhledávání: '"Dharmesh Jawarani"'
Autor:
Jason Mantey, Leo Mathew, M. Ainom, R. Garcia, Dharmesh Jawarani, Sayan Saha, Mohamed M. Hilali, William James, D. Sarkar, E. U. Onyegam, Rajesh A. Rao, Sanjay K. Banerjee
Publikováno v:
Solar Energy Materials and Solar Cells. 111:206-211
A thin, flexible monocrystalline germanium (c-Ge) heterojunction solar cell has been developed based on a novel kerfless exfoliation process and remote plasma-enhanced chemical vapor deposition (RPCVD) of hydrogenated amorphous silicon (a-Si:H). The
Autor:
Duan Xu, Leo Mathew, D. Sarkar, Ujjwal Das, Jerry G. Fossum, Mohamed M. Hilali, Ryan S. Smith, Dharmesh Jawarani, Sayan Saha, Sanjay K. Banerjee, E. U. Onyegam, Rama Rao
Publikováno v:
MRS Proceedings. 1493:51-58
Investigation of optical absorption in ∼25μm thick, monocrystalline silicon (Si) substrates obtained from a novel exfoliation technique is done by fabricating solar cells with single heterojunction architecture (without using intrinsic amorphous s
Autor:
Jon D. Cheek, Dean J. Denning, Stefan Zollner, Kyuh Wan Chang, Rich Gregory, Dharmesh Jawarani, Marc A. Rossow, J. Jiang, Scott Bolton
Publikováno v:
Scopus-Elsevier
Autor:
D. Sarkar, Dharmesh Jawarani, Dewei Xu, Mohamed M. Hilali, Ryan S. Smith, Jerry G. Fossum, A. Gurmu, M. Ainom, Sayan Saha, E. U. Onyegam, Leo Mathew, R. Stout, R. Garcia, Rajesh A. Rao, Sanjay K. Banerjee
Publikováno v:
2012 IEEE 38th Photovoltaic Specialists Conference (PVSC) PART 2.
For the first time, a remote plasma chemical vapor deposition (RPCVD) based c-Si/a-Si heterojunction solar cell process was developed on thin crystalline silicon semiconductor-on-metal (SOM) substrate. In RPCVD systems, deposition temperature, deposi
Autor:
Scott Smith, Leo Mathew, Rajesh A. Rao, Sayan Saha, Sanjay K. Banerjee, Dewei Xu, Paul S. Ho, D. Sarkar, Dharmesh Jawarani
Publikováno v:
2012 IEEE 38th Photovoltaic Specialists Conference (PVSC) PART 2.
Thin crystalline silicon solar cells are of interest due to significant material cost reduction and potentially high conversion efficiency. We have previously demonstrated a patented, novel exfoliation technology capable of producing large area (156
Autor:
Dharmesh Jawarani, Dewei Xu, Scott Smith, Rajesh A. Rao, Leo Mathew, Sayan Saha, Dabraj Sarkar, Sanjay Banerjee, Paul S. Ho
Publikováno v:
2012 IEEE 38th Photovoltaic Specialists Conference (PVSC) PART 2.
Autor:
Leo Mathew, Ujjwal Das, M. Ainom, Scott Smith, Jerry G. Fossum, R. Stout, D. Sarkar, R. Garcia, Qi Wang, Dewei Xu, E. U. Onyegam, Sayan Saha, Ajeet Rohatgi, Rajesh A. Rao, Sanjay K. Banerjee, Dharmesh Jawarani, A. Gurmu, Ajay Upadhyaya
Publikováno v:
2012 38th IEEE Photovoltaic Specialists Conference.
The crystalline Si photovoltaic industry has been scaling down the Si wafer thickness in order to reduce costs and potentially attain higher efficiencies by minimizing bulk recombination. However, cell manufacturers are struggling to reduce the wafer
Autor:
Sayan Saha, R. Garcia, Jason Mantey, D. Sarkar, William James, M. Ainom, Mohamed M. Hilali, E. U. Onyegam, Leo Mathew, Dharmesh Jawarani, Rajesh A. Rao, Sanjay K. Banerjee
Publikováno v:
2012 38th IEEE Photovoltaic Specialists Conference.
A thin, flexible monocrystalline germanium (c-Ge) heterojunction solar cell has been developed based on a cost-effective kerfless exfoliation process and remote plasma-enhanced chemical vapor deposition (RPCVD) of hydrogenated amorphous silicon (a-Si
Autor:
Sayan Saha, Leo Mathew, Curt Vass, Scott Smith, Dewei Xu, D. Sarkar, Dharmesh Jawarani, Rajesh A. Rao, Paul S. Ho
Publikováno v:
2012 IEEE International Reliability Physics Symposium (IRPS).
Thin crystalline silicon solar cells, on the order of a few to tens of μm thick, are of interest due to significant material cost reduction and potentially high conversion efficiency. These thin silicon films impose stringent mechanical strength and
Autor:
Jerry G. Fossum, E. U. Onyegam, A. Gurmu, Donghwan Ahn, Leo Mathew, D. Sarkar, Dharmesh Jawarani, R. Stout, R. Garcia, Rajesh A. Rao, Scott Smith, Sayan Saha, Sanjay K. Banerjee, Dewei Xu
Publikováno v:
2011 37th IEEE Photovoltaic Specialists Conference.
To achieve grid parity, photovoltaic (PV) technologies must reduce the production cost of PV modules to well below $1/Wp. In crystalline Si (c-Si) solar cells the cost of raw Si wafers is over 40% of the module cost. There is an industry wide push to