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Lal Mohammad
Lal Mohammad
在 sdstate.edu 的电子邮件经过验证
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引用次数
引用次数
年份
Solution processed pristine PDPP3T polymer as hole transport layer for efficient perovskite solar cells with slower degradation
A Dubey, N Adhikari, S Venkatesan, S Gu, D Khatiwada, Q Wang, ...
Solar Energy Materials and Solar Cells 145, 193-199, 2016
1122016
Efficient perovskite solar cells by temperature control in single and mixed halide precursor solutions and films
D Khatiwada, S Venkatesan, N Adhikari, A Dubey, AF Mitul, L Mohammad, ...
The Journal of Physical Chemistry C 119 (46), 25747-25753, 2015
632015
Low temperature efficient interconnecting layer for tandem polymer solar cells
AF Mitul, L Mohammad, S Venkatesan, N Adhikari, S Sigdel, Q Wang, ...
Nano energy 11, 56-63, 2015
472015
Benzothiadiazole-based polymer for single and double junction solar cells with high open circuit voltage
S Venkatesan, EC Ngo, Q Chen, A Dubey, L Mohammad, N Adhikari, ...
Nanoscale 6 (12), 7093-7100, 2014
392014
Improved performance by morphology control via fullerenes in PBDT-TBT-alkoBT based organic solar cells
D Khatiwada, S Venkatesan, Q Chen, J Chen, N Adhikari, A Dubey, ...
Journal of Materials Chemistry A 3 (29), 15307-15313, 2015
262015
Morphological evolution and its impacts on performance of polymer solar cells
D Khatiwada, S Venkatesan, J Chen, Q Chen, N Adhikari, A Dubey, ...
IEEE Transactions on Electron Devices 62 (4), 1284-1290, 2015
162015
Improved performance for inverted organic photovoltaics via spacer between benzodithiophene and benzothiazole in polymers
L Mohammad, Q Chen, A Mitul, J Sun, D Khatiwada, B Vaagensmith, ...
The Journal of Physical Chemistry C 119 (33), 18992-19000, 2015
152015
Shelf life stability comparison in air for solution processed pristine PDPP3T polymer and doped spiro-OMeTAD as hole transport layer for perovskite solar cell
A Dubey, N Adhikari, S Venkatesan, S Gu, D Khatiwada, Q Wang, ...
Data in brief 7, 139-142, 2016
132016
Modeling of organic solar cell using response surface methodology
R Suliman, AF Mitul, L Mohammad, G Djira, Y Pan, Q Qiao
Results in physics 7, 2232-2241, 2017
122017
Optimization of interconnecting layers for double-and triple-junction polymer solar cells
AF Mitul, L Mohammad, B Vaagensmith, A Dubey, D Khatiwada, Q Qiao
IEEE Journal of Photovoltaics 5 (6), 1674-1679, 2015
102015
Interface Modification of Inverted Structure PSBTBT:PC70BM Solar Cells for Improved Performance
L Mohammad, AF Mitul, S Sigdel, A Dubey, D Khatiwada, N Adhikari, ...
IEEE Journal of Photovoltaics 5 (6), 1659-1664, 2015
92015
Efficient csf interlayer for high and low bandgap polymer solar cell
AF Mitul, J Sarker, N Adhikari, L Mohammad, Q Wang, D Khatiwada, ...
AIP Advances 8 (2), 2018
52018
Influence of nanoscale morphology on performance of inverted structure metallated conjugated polymer solar cells
L Mohammad, A Mitul, Q Wang, S Venkatesan, D Khatiwada, A Dubey, ...
IEEE Transactions on Electron Devices 62 (9), 3029-3033, 2015
42015
Optimization of interfacial layer for double and triple junction polymer solar cell
AF Mitul, L Mohammad, B Vaagensmith, D Khatiwada, A Dubey, Q Qiao
Organic Photovoltaics XVI 9567, 128-130, 2015
22015
Investigation of device performance due to inclusion of Ru and Pt based heavy metals in organometllic solar cells
AF Mitul, N Uddin, J Sarker, D Khatiwada, N Adhikari, L Mohammad, ...
Organic, Hybrid, and Perovskite Photovoltaics XIX 10737, 54-59, 2018
2018
Solution processed pristine PDPP3T polymer as hole transport layer for efficient perovskite solar cells with slower degradation
S Venkatesan, L Mohammad, Q Wang, D Khatiwada, O Qiao, S Gu, ...
2016
Shelf life stability comparison in air for solution processed pristine PDPP3T polymer and doped spiro-OMeTAD as hole transport layer for perovskite solar cell
S Venkatesan, L Mohammad, S Gua, D Khatiwada, Q Wang, N Adhikari, ...
2016
Study Effects of Solvents and Additives on Nano-Morphology and Performance of PBDT-ABT-2 Based Inverted Polymer Solar Cells
L Mohammad
South Dakota State University, 2015
2015
Modeling of bulk heterojunction polymer solar cell based on response surface methodology
AFM Rajab Suliman, L Mohammad, Y Pan, Q Qiao
ratio 10, 12, 0
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