1 - 1 |
Photovoltaics, Solar Energy Materials and Thin Films-IMRC 2007, Cancun, Mexico Mathew X |
2 - 5 |
Effect of electron irradiation on the properties of CdTe/CdS solar cells Krishnan S, Sanjeev G, Pattabi M, Mathew X |
6 - 10 |
Transport boundary conditions for solar cells Volovichev IN, Velazquez-Perez JE, Gurevich YG |
11 - 14 |
SEM analysis and selenization of Cu-In alloy films produced by co-sputtering of metals Volobujeva O, Altosaar M, Raudoja J, Mellikov E, Grossberg M, Kaupmees L, Barvinschi P |
15 - 18 |
CdTe thin film growth model under CSS conditions Cruz-Campa JL, Zubia D |
19 - 24 |
Angle-dependent XPS analysis of silicon nitride film deposited on screen-printed crystalline silicon solar cell Singh P, Shivaprasad SM, Lal M, Husain M |
25 - 27 |
Responsivity properties of ZnTe/GaAs heterostructures formed with pulsed-laser deposition Acharya KP, Erlacher A, Ullrich B |
28 - 32 |
Optical, electrical and structural properties of indium-doped cadmium oxide films obtained by the sol-gel technique Flores MA, Castanedo R, Torres G, Zelaya O |
33 - 36 |
Carbon-doped Sb2S3 thin films: Structural, optical and electrical properties Cardenas E, Arato A, Perez-Tijerina E, Das Roy TK, Castillo GA, Krishnan B |
37 - 40 |
Physicochemical and morphological properties of spin-coated poly (3-alkylthiophene) thin films Nicho ME, Hernandez F, Hu H, Medrano G, Guizado M, Guerrero JA |
41 - 44 |
Effective absorption coefficient for graded band-gap semiconductors and the expected photocurrent density in solar cells Morales-Acevedo A |
45 - 50 |
Thin films formed by selenization of CuInxB1-x precursors in Se vapor Kamler CA, Soukup RJ, Ianno NJ, Huguenin-Love JL, Olejnicek J, Darveau SA, Exstrom CL |
51 - 54 |
Photovoltaic devices based on electrochemical-chemical deposited CdS and poly3-octylthiophene thin films Hu HL, Kung SC, Yang LM, Nicho ME, Penner RM |
55 - 59 |
Optical and structural properties of the sol-gel-prepared ZnO thin films and their effect on the photocatalytic activity Delgado GT, Romero CIZ, Hernandez SAM, Perez RC, Angel OZ |
60 - 64 |
Schottky diode solar cells on electrodeposited copper phthalocyanine films Rajaputra S, Sagi G, Singh VP |
65 - 68 |
Monograin materials for solar cells Mellikov E, Meissner D, Varema T, Altosaar M, Kauk M, Volobujeva O, Raudoja J, Timmo K, Danilson M |
69 - 73 |
Effect of sodium addition on Cu-deficient CuIn1-xGaxS2 thin film solar cells Vasekar PS, Dhere NG |
74 - 78 |
Effect of thermal annealing on the structural and optical properties of nanostructured zinc oxide thin films prepared by pulsed laser ablation Vinodkumar R, Lethy KJ, Beena D, Satyanarayana M, Jayasree RS, Ganesan V, Nayar VU, Pillai VPM |
79 - 84 |
CdTe solar cell degradation studies with the use of US as the window material Mendoza-Perez R, Sastre-Hernandez J, Contreras-Puente G, Vigil-Galan O |
85 - 91 |
Spherical antireflection coatings by large-area convective assembly of monolayer silica microspheres Wang Y, Chen L, Yang H, Guo Q, Zhou W, Tao M |
92 - 97 |
High near-infrared transparent molybdenum-doped indium oxide thin films for nanocrystalline silicon solar cell applications Parthiban S, Gokulakrishnan V, Ramamurthi K, Elangovan E, Martins R, Fortunato E, Ganesan R |
98 - 107 |
Optical solar energy adaptations and radiative temperature control of green leaves and tree barks Henrion W, Tributsch H |
108 - 113 |
Synthesis and photovoltaic properties of a star-shaped molecule with triphenylamine as core and benzo[1,2,5]thiadiazol vinylene as arms Wu GL, Zhao GJ, He C, Zhang J, He QG, Chen XM, Li YF |
114 - 118 |
Effects of substrate temperature on the structural and electrical properties of Cu(In,Ga)Se-2 thin films Zhang L, He Q, Jiang WL, Liu FF, Li CJ, Sun Y |
119 - 128 |
Thermotropic layers for flat-plate collectors-A review of various concepts for overheating protection with polymeric materials Resch K, Wallner GM |
129 - 135 |
Network structure organic photovoltaic devices prepared by electrochemical copolymerization Kim SY, Lee KH, Chin BD, Yu JW |
136 - 142 |
High latent heat storage and high thermal conductive phase change materials using exfoliated graphite nanoplatelets Kim S, Drza LT |
143 - 147 |
Preparation, characterization, and thermal properties of microencapsulated phase change material for thermal energy storage Alkan C, Sari A, Karaipekli A, Uzun O |
148 - 152 |
Quality and stability of compound indium sulphide as source material for buffer layers in Cu(In,Ga)Se-2 solar cells Pistor P, Caballero R, Hariskos D, Izquierdo-Roca V, Wachter R, Schorr S, Klenk R |
153 - 157 |
Electrochemically deposited p-n homojunction cuprous oxide solar cells Han KH, Tao M |