Hierarchical Rutile TiO2 Flower Cluster‐Based High Efficiency Dye‐Sensitized Solar Cells via Direct Hydrothermal Growth on Conducting Substrates M Ye, HY Liu, C Lin, Z Lin Small 9 (2), 312-321, 2013 | 151 | 2013 |
Semiconductor hierarchically structured flower-like clusters for dye-sensitized solar cells with nearly 100% charge collection efficiency X Xin, HY Liu, M Ye, Z Lin Nanoscale 5 (22), 11220-11226, 2013 | 27 | 2013 |
Surface Defect Passivation and Reaction of c-Si in H2S HY Liu, UK Das, RW Birkmire Langmuir 33 (51), 14580-14585, 2017 | 23 | 2017 |
Analysis of silicon wafer surface preparation for heterojunction solar cells using X-ray photoelectron spectroscopy and effective minority carrier lifetime UJ Nsofor, L Zhang, A Soman, CM Goodwin, H Liu, KD Dobson, UK Das, ... Solar Energy Materials and Solar Cells 183, 205-210, 2018 | 17 | 2018 |
Experimental and simulated analysis of p a-Si: H defects on silicon heterojunction solar cells: trade-offs between VOC and FF L Zhang, UK Das, Z Shu, H Liu, RW Birkmire, SS Hegedus Photovoltaic Specialist Conference (PVSC), 2015 IEEE 42nd, 1-5, 2015 | 11 | 2015 |
The role of back contact patterning on stability and performance of Si IBC heterojunction solar cells UK Das, HY Liu, J He, S Hegedus Proceeding of IEEE 40th Photovoltaic Spec. Conf.,, 0590 - 0593, 2014 | 7 | 2014 |
Si surface passivation by sulfur and reduction of interface defect recombination U Das, S Jafari, L Zhang, HY Liu, R Birkmire, S Hegedus 2018 IEEE 7th World Conference on Photovoltaic Energy Conversion (WCPEC)(A …, 2018 | 5 | 2018 |
Silicon defect passivation by H2S reaction and patterning process of interdigitated back contact silicon heterojunction (IBC-SHJ) solar cell HY Liu University of Delaware, 2018 | 2 | 2018 |