757 - 763 |
Improving power conversion efficiency in polythiophene/fullerene-based bulk heterojunction solar cells Rait S, Kashyap S, Bhatnagar PK, Mathur PC, Sengupta SK, Kumar J |
764 - 768 |
Preparation and characterization of cross-linking PEG/MDI/PE copolymer as solid-solid phase change heat storage material Li WD, Ding EY |
769 - 773 |
Vertically aligned ZnO nanowire arrays in Rose Bengal-based dye-sensitized solar cells Pradhan B, Batabyal SK, Pal AJ |
774 - 778 |
Photovoltaic cells based on pulsed electrochemically deposited SnS and photochemically deposited US and Cd1-xZnxS Gunasekaran M, Ichimura M |
779 - 784 |
A study of stainless steel-based dye-sensitized solar cells and modules Jun Y, Kim J, Kang MG |
785 - 790 |
Investigation of PEO-imidazole ionic liquid oligomer electrolytes for dye-sensitized solar cells Wang M, Xiao XR, Zhou XW, Li XP, Lin Y |
791 - 800 |
Room temperature transport measurements on Bridgman-grown p-type CuIn1-xGaxSe2 Champness CH, Cheung T, Shih I |
801 - 806 |
DC current injection into the network from PV inverters of < 5 kW for low-voltage small grid-connected PV systems Salas V, Alonso-Abella M, Olias E, Chenlo F, Barrado A |
807 - 812 |
High-efficiency, Cd-free copper-indium-gallium-diselenide/polymer hybrid solar cells Gowrishankar V, Luscombe CK, McGehee MD, Frechet JMJ |
813 - 820 |
Nanowire-based electrochromic devices Gubbala S, Thangala J, Sunkara MK |
821 - 828 |
The effect of temperature on the performance of dye-sensitized solar cells based on a propyl-methyl-imidazolium iodide electrolyte Berginc M, Krasovec UO, Jankovec M, Topic M |
829 - 842 |
Luminescent layers for enhanced silicon solar cell performance: Up-conversion Shalav A, Richards BS, Green MA |
843 - 846 |
Recent improvements and arising challenges in dye-sensitized solar cells Anandan S |
847 - 850 |
Assessment of a low-cost gold-free metallization for III-V high concentrator solar cells Rey-Stolle I, Galiana B, Algora C |
851 - 855 |
Deposition of Ag-based Al-doped ZnO multilayer coatings for the transparent conductive electrodes by electron beam evaporation Sahu DR, Lin SY, Huang JL |