5745 - 5750 |
Sulfosalts - A new class of compound semiconductors for photovoltaic applications Dittrich H, Bieniok A, Brendel U, Grodzicki M, Topa D |
5751 - 5754 |
Synthesis of cadmium and zinc semiconductor compounds from an ionic liquid containing choline chloride and urea Dale PJ, Samantilleke AP, Shivagan DD, Peter LM |
5755 - 5758 |
Copper sulfides obtained by spray pyrolysis - Possible absorbers in solid-state solar cells Isac L, Duta A, Kriza A, Manolache S, Nanu M |
5759 - 5762 |
Hybrid solar cells based on CuInS2 and organic buffer-sensitizer layers Bereznev S, Koeppe R, Konovalov I, Kois J, Guenes S, Opik A, Mellikov E, Sariciftci NS |
5763 - 5766 |
Photoelectrical properties of In/n-CuIn5Se8 Schottky barriers Bodnar IV, Rud VY, Rud YV, Bairamov BK, Victorov IA, Leon M |
5767 - 5770 |
Lead antimony sulfides as potential solar absorbers for thin film solar cells Versavel MY, Haber JA |
5771 - 5776 |
Structural and chemical transformations in SnS thin films used in chemically deposited photovoltaic cells Avellaneda D, Delgado G, Nair MTS, Nair PK |
5777 - 5782 |
Antimony sulfide thin films in chemically deposited thin film photovoltaic cells Messina S, Nair MTS, Nair PK |
5783 - 5786 |
An investigation on palladium sulphide (PdS) thin films as a photovoltaic material Ferrer IJ, Diaz-Chao P, Pascual A, Sanchez C |
5787 - 5791 |
Electrodeposition of CdSe on nanopatterned pillar arrays for photonic and photovoltaic applications Teh LK, Furin V, Martucci A, Guglielmi M, Wong CC, Romanato F |
5792 - 5797 |
Studies of key technologies for large area CdTe thin film solar cells Feng L, Wu LL, Lei Z, Li W, Cai YP, Cai W, Zhang JQ, Luo Q, Li B, Zheng JG |
5798 - 5803 |
Phase control of CuxTe film and its effects on CdS/CdTe solar cell Wu X, Zhou J, Duda A, Yan Y, Teeter G, Asher S, Metzger WK, Demtsu S, Wei SH, Noufi R |
5804 - 5807 |
CdTe-CdS solar cells - Production in a new baseline and investigation of material properties Hadrich M, Lorenz N, Metzner H, Reislohner U, Mack S, Gossla M, Witthuhn W |
5808 - 5813 |
In situ deposition of cadmium chloride films using MOCVD for CdTe solar cells Barrioz V, Irvine SJC, Jones EW, Rowlands RL, Lamb DA |
5814 - 5818 |
Growth regimes of CdTe deposited by close-spaced sublimation for application in thin film solar cells Luschitz J, Lakus-Wollny K, Klein A, Jaegermann W |
5819 - 5823 |
Physical properties of Bi doped CdTe thin films grown by CSVT and their influence on the CdS/CdTe solar cells PV-properties Vigil-Galan O, Sanchez-Meza E, Ruiz CM, Sastre-Hernandez J, Morales-Acevedo A, Cruz-Gandarilla F, Aguilar-Hernandez J, Saucedo E, Contreras-Puente G, Bermudez V |
5824 - 5827 |
Comparative study of CdS/CdTe cells fabricated with and without evaporated Te-layer Potlog T, Ghimpu L, Antoniuc C |
5828 - 5832 |
Nucleation of CdTe thin films deposited by close-space sublimation under a nitrogen ambient Major JD, Proskuryakov YY, Durose K, Green S |
5833 - 5836 |
An effective method of Cu incorporation in CdTe solar cells for improved stability Erra S, Shivakumar C, Zhao H, Barri K, Morel DL, Ferekides CS |
5837 - 5842 |
In situ investigation of the selenization kinetics of Cu-Ga precursors using time-resolved high-temperature X-ray diffraction Kim WK, Payzant EA, Anderson TJ, Crisalle OD |
5843 - 5847 |
Formation reactions of chalcopyrite compounds and the role of sodium doping Hergert F, Jost S, Hock R, Purwins M, Palm J |
5848 - 5851 |
Properties of Cu(In,Ga)(S,Se)(2) thin films prepared by selenization/sulfurization of metallic alloys Zaretskaya EP, Gremenok VF, Zalesski VB, Bente K, Schorr S, Zukotynski S |
5852 - 5856 |
Comparative study of sputtered and electrodeposited CI(S,Se) and CIGSe thin films Ihlal A, Bouabid K, Soubane D, Nya M, Ait-Taleb-Ali O, Amira Y, Outzourhit A, Nouet G |
5857 - 5861 |
Flexible Cu(In,Ga)Se-2 on Al foils and the effects of Al during chemical bath deposition Bremaud D, Rudmann D, Kaelin M, Ernits K, Bilger G, Dobeli M, Zogg H, Tiwari AN |
5862 - 5866 |
Effect of Cu excess on three-stage CuGaSe2 thin films using in-situ process controls Caballero R, Siebentritt S, Sakurai K, Kaufmann CA, Schock HW, Lux-Steiner MC |
5867 - 5870 |
Growth of single-phase CuInGaSe2 photo-absorbing alloy films by the selenization method using diethylselenide as a less-hazardous Se source Sugiyama M, Kinoshita A, Fukaya M, Nakanishi H, Chichibu SF |
5871 - 5875 |
Electrochemical etching of copper indium diselenide surface Kois J, Bereznev S, Volobujeva O, Mellikov E |
5876 - 5879 |
Fabrication of CIGS solar cells with a Na-doped Mo layer on a Na-free substrate Yun JH, Kim KH, Kim MS, Ahn BT, Ahn SJ, Lee JC, Yoon KH |
5880 - 5883 |
The performance of CuInSe2 monograin layer solar cells with variable indium content Kauk M, Altosaar M, Raudoja J, Jagomagi A, Danilson M, Varema T |
5884 - 5886 |
CuInSe2 monograin growth in the liquid phase of potassium iodide Timmo K, Altosaar M, Kauk M, Raudoja J, Mellikov E |
5887 - 5890 |
The effect of sodium doping to CuInSe2 monograin powder properties Timmo K, Altosaar M, Raudoja J, Mellikov E, Varema T, Danilson M, Grossberg M |
5891 - 5894 |
Study of composition reproducibility of electrochemically co-deposited CuInSe2 films onto ITO Kaupmees L, Altosaar M, Volubujeva O, Mellikov E |
5895 - 5898 |
Phase relations in the ternary Cu-Ga-In system Purwins M, Enderle R, Schmid M, Berwian P, Muller G, Hergert F, Jost S, Hock R |
5899 - 5903 |
Electrodeposition of chalcopyrite films from ionic liquid electrolytes Shivagan DD, Dale PJ, Samantilleke AP, Peter LM |
5904 - 5908 |
Structural properties of Ge doped CuGaSe2 films studied by Raman and Photoluminescence spectroscopy Theodoropoulou S, Papadimitriou D, Doka S, Schedel-Niedrig T, Lux-Steiner MC |
5909 - 5912 |
One-step electrodeposited CuInSe2 thin films studied by Raman spectroscopy Ramdani O, Guillemoles JF, Lincot D, Grand PP, Chassaing E, Kerrec O, Rzepka E |
5913 - 5916 |
Raman spectroscopy for quality control and process optimization of chalcopyrite thin films and devices Palm J, Jost S, Hock R, Probst V |
5917 - 5920 |
Characteristics of stacked CuInS2 and CuGaS2 layers as determined by the growth sequence Guillen C, Herrero J |
5921 - 5924 |
Sulphurization of single-phase Cu11In9 precursors for CuInS2 solar cells Joswig A, Gossla M, Metzner H, Reislohner U, Hahn T, Witthuhn W |
5925 - 5928 |
The effect of sulphur-terminated GaAs substrates on the MOVPE growth of CuGaS2 thin films Berndt PR, Botha JR, Branch MS, Leitch AWR, Kirmse H, Neumann W, Weber J |
5929 - 5933 |
Progress in the development of CuInS2 based mini-modules Klaer J, Klenk R, Schock HW |
5934 - 5937 |
Sulphurisation of gallium-containing thin-film precursors analysed in-situ Mainz R, Klenk R, Lux-Steiner MC |
5938 - 5942 |
Alternative deposition methods of copper and silver indium ternary sulphides with spinel structure Makhova L, Konovalov I |
5943 - 5948 |
Role of oxygen in enhancing N-type conductivity of CuInS2 thin films Ben Rabeh M, Kanzari M, Rezig B |
5949 - 5952 |
Fabrication and characterization of Cu2ZnSnS4 thin films deposited by spray pyrolysis technique Kamoun N, Bouzouita H, Rezig B |
5953 - 5956 |
Predicted formation reactions for the solid-state syntheses of the semiconductor materials Cu2SnX3 and Cu2ZnSnX4 (X = S, Se) starting from binary chalcogenides Hergert F, Hock R |
5957 - 5960 |
The influence of the precursor concentration on CuSbS2 thin films deposited from aqueous solutions Manolache S, Duta A, Isac L, Nanu M, Goossens A, Schoonman J |
5961 - 5963 |
CdTe photovoltaics: Life cycle environmental profile and comparisons Fthenakis VM, Kim HC |
5964 - 5967 |
Improvement of photon collection in Cu(In,Ga)Se-2 solar cells and modules by fluorescent frequency conversion Glaeser GC, Rau U |
5968 - 5972 |
The potential of textured front ZnO and flat TCO/metal back contact to improve optical absorption in thin Cu(In,Ga)Se-2 solar cells Campa A, Krc J, Malmstrom J, Edoff M, Smole F, Topic M |
5973 - 5978 |
Manufacturing and application of CIS solar modules Dimmler B, Wachter R |
5979 - 5984 |
Pilot production of large-area CuInS2-based solar modules Meyer N, Meeder A, Schmid D |
5985 - 5991 |
Structural aspects of adamantine like multinary chalcogenides Schorr S |
5992 - 5996 |
Advanced X-ray methods for chalcogenide thin film analysis Kotschau IM, Weber A, Pistor P, Lauermann I, Fischer CH, Schock HW |
5997 - 5999 |
Cu2ZnSnS4-type thin film solar cells using abundant materials Jimbo K, Kimura R, Kamimura T, Yamada S, Maw WS, Araki H, Oishi K, Katagiri H |
6000 - 6014 |
Recent progress in transparent oxide semiconductors: Materials and device application Hosono H |
6015 - 6019 |
Cu-accumulation at the interface between sputter-(Zn,Mg)O and Cu(In,Ga)(S,Se)(2) - A key to understanding the need for buffer layers? Lauermann I, Loreck C, Grimm A, Klenk R, Monig H, Lux-Steiner MC, Fischer CH, Visbeck S, Niesen TP |
6020 - 6023 |
Structural study and electronic band structure investigations of the solid solution NaxCu1-xIn5S8 and its impact on the Cu(In,Ga)Se-2/In2S3 interface of solar cells Lafond A, Guillot-Deudon C, Harel S, Mokrani A, Barreau N, Gall S, Kessler J |
6024 - 6027 |
Optimization of ALD-(Zn,Mg)O buffer layers and (Zn,Mg)O/Cu(In,Ga)Se-2 interfaces for thin film solar cells Platzer-Bjorkman C, Torndahl I, Hultqvist A, Kessler J, Edoff M |
6028 - 6031 |
Performance of CuIn1-xGaxSe2/(PVD)In2S3 solar cells versus gallium content Jacob F, Barreau N, Gall S, Kessler J |
6032 - 6035 |
Thermodynamic and experimental study of chemical bath deposition of Zn(S,O,OH) buffer layers in basic aqueous ammonia solutions. Cell results with electrodeposited CuIn(S,Se)(2) absorbers Hubert C, Naghavi N, Canava B, Etcheberry A, Lincot D |
6036 - 6040 |
Study of CuInS2/buffer/ZnO solar cells, with chemically deposited ZnS-In2S3 buffer layers Asenjo B, Chaparro AM, Gutierrez MT, Herrero J, Klaer J |
6041 - 6044 |
Indium sulfide buffer layers deposited by dry and wet methods Asenjo B, Sanz C, Guillen C, Chaparro AM, Gutierrez MT, Herrero J |
6045 - 6050 |
Properties of indium tin oxide films deposited using High Target Utilisation Sputtering Calnan S, Upadhyaya HM, Thwaites MJ, Tiwari AN |
6051 - 6054 |
Characterisation of ultrasonically sprayed InxSy buffer layers for Cu(In,Ga)Se-2 solar cells Ernits K, Bremaud D, Buecheler S, Hibberd CJ, Kaelin M, Khrypunov G, Muller U, Mellikov E, Tiwari AN |
6055 - 6059 |
Effects of CdCl2 treatment on the properties of CdS films prepared by r.f. magnetron sputtering Lee JH, Lee DJ |
6060 - 6063 |
The structural and electrical properties of Zn-Sn-O buffer layers and their effect on CdTe solar cell performance Gayam S, Bapartapalli S, Zhao H, Nemani L, Morel DL, Ferekides CS |
6064 - 6067 |
Characterization of the chemical bath deposited In(OH)(x)S-y films: Effect of the growth conditions Dedova T, Wienke J, Goris M, Krunks M |
6068 - 6072 |
Indium sulfide buffer/CIGSSe interface engineering: Improved cell performance by the addition of zinc sulfide Allsop NA, Camus C, Hansel A, Gledhill SE, Lauermann I, Lux-Steiner MC, Fischer CH |
6073 - 6075 |
Bulk and interface properties of (Zn,Mg)O buffer layers sputtered in hydrogen-containing atmosphere Grimm A, Klenk R, Lux-Steiner MC, Visbeck S |
6076 - 6079 |
Influence of sodium compounds at the Cu(In,Ga)Se-2/(PVD)In2S3 interface on solar cell properties Gall S, Barreau N, Jacob F, Harel S, Kessler J |
6080 - 6084 |
Structural studies on some doped CdS thin films deposited by thermal evaporation Iacomi F, Purica M, Budianu E, Prepelita P, Macovei D |
6085 - 6088 |
Characterization of CBD-CdS layers chemical bath and their relation with the with different S/Cd ratios in the efficiency of CdS/CdTe solar cells Vigil-Galan O, Morales-Acevedo A, Cruz-Gandarilla F, Jimenez-Escamilla MG, Aguilar-Hernandez J, Contreras-Puente G, Sastre-Hernandez J, Sanchez-Meza E, Ramon-Garcia ML |
6089 - 6093 |
Influence of substrates on the structural and optical properties of chemically deposited CdS films Lee JH |
6094 - 6098 |
Structural, electrical and optical properties of ZnO : Al films deposited on flexible organic substrates for solar cell applications Lee J, Lee D, Lim D, Yang K |
6099 - 6102 |
Strategies to increase CdTe solar-cell voltage Sites J, Pan J |
6103 - 6106 |
Analysis of CdS/CdTe devices incorporating a ZnTe : Cu/Ti contact Gessert TA, Asher S, Johnston S, Young M, Dippo P, Corwine C |
6107 - 6111 |
Photoluminescence studies of CdTe films and junctions Vatavu S, Zhao H, Padma V, Rudaraju R, Morel DL, Gasin P, Caraman I, Ferekides CS |
6112 - 6118 |
Junction formation of CuInSe2 with CdS: A comparative study of "dry" and "wet" interfaces Hunger R, Lebedev MV, Sakurai K, Schulmeyer T, Mayer T, Klein A, Niki S, Jaegermann W |
6119 - 6122 |
Chemical properties of the Cu(In,Ga)Se-2/MO/glass interfaces in thin film solar cells Weinhardt L, Blum M, Bar M, Heske C, Fuchs O, Umbach E, Denlinger JD, Ramanathan K, Noufi R |
6123 - 6126 |
Interfacial chemistry control in thin film solar cells based on electrodeposited CuIn(S,Se)(2) Roussel O, Lamirand M, Naghavi N, Guillemoles JF, Canava B, Etcheberry A |
6127 - 6131 |
Lateral features of Cu(In0.7Ga0.3)Se-2-heterodiodes in the mu m-scale by confocal luminescence and focused light beam induced currents Bauer GH, Gutay L |
6132 - 6135 |
Development of ZnSexTe1-x p-type contacts for high efficiency tandem structures Vakkalanka S, Ferekides CS, Morel DL |
6136 - 6141 |
Microscopic characterization of individual grain boundaries in Cu-III-VI2 chalcopyrites Sadewasser S |
6142 - 6146 |
Metastabilities in the electrical characteristics of CIGS devices: Experimental results vs theoretical predictions Igalson M, Cwil M, Edoff M |
6147 - 6150 |
Epitaxial and polycrystalline CuInS2 thin films: A comparison of opto-electronic properties Eberhardt J, Schulz K, Metzner H, Cieslak J, Hahn T, Reislohner U, Gossla M, Hudert F, Goldhahn R, Witthuhn W |
6151 - 6154 |
Time-resolved photoluminescence in Cu(In,Ga)Se-2 thin films and solar cells Shirakata S, Nakada T |
6155 - 6159 |
Photocapacitance study of deep levels in thin CdTePV devices Enzenroth RA, Takamiya T, Barth KL, Sampath WS |
6160 - 6162 |
New insights on chalcopyrites from solid-state theory Zunger A |
6163 - 6167 |
Characterization of the CdS/Cu(In,Ga)Se-2 interface by electron beam induced currents Kniese R, Powalla M, Rau U |
6168 - 6171 |
A Sigma 3 grain boundary in an epitaxial chalcopyrite film Siebentritt S, Eisenbarth T, Wimmer M, Leendertz C, Streicher F, Sadewasser S, Lux-Steiner MC |
6172 - 6174 |
Surface science studies of Cu containing back contacts for CdTe solar cells Spath B, Lakus-Wollny K, Fritsche J, Ferekides CS, Klein A, Jaegermann W |
6175 - 6178 |
Doping profiles in CdTe/CdS thin film solar cells Reislohner U, Hadrich M, Lorenz N, Metzner H, Witthuhn W |
6179 - 6183 |
The analysis of current flow mechanism in CdS/CdTe heterojunction Vatavu S, GaSin P |
6184 - 6187 |
Role of thermal treatment on the luminescence properties of CdTe thin films for photovoltaic applications Armani N, Salviati G, Nasi L, Bosio A, Mazzamuto S, Romeo N |
6188 - 6191 |
Study on sulfur diffusion in CuInSe2 thin films using two thermal profiles Yoosuf R, Jayaraj MK |
6192 - 6195 |
Analysis of the edge emission of highly conductive CuGaTe2 Krustok J, Groossberg M, Jagomagi A, Danilson M, Raudoja J |
6196 - 6199 |
Characterization of Cu(In,Ga)Se-2 photovoltaic modules van Dyk EE, Radue C, Gxasheka AR |
6200 - 6203 |
Diffusion length variation in photovoltaic cells with Bridgman-grown CuInSe2 substrates Champness CH |
6204 - 6207 |
Investigation of potential and compositional fluctuations in CuGa3Se5 crystals using photoluminescence spectroscopy Grossberg M, Krustok J, Jagomagi A, Leon M, Arushanov E, Nateprov A, Bodnar I |
6208 - 6211 |
Investigation of relation between Ga concentration and defect levels of Al/Cu (In,Ga)Se-2 Schottky junctions using admittance spectroscopy Sakurai T, Ishida N, Ishizuka S, Matsubara K, Sakurai K, Yamada A, Paul GK, Akimoto K, Niki S |
6212 - 6216 |
Spectrally resolved photolurninescence studies on Cu(In,Ga)Se-2 solar cells with lateral submicron resolution Gutay L, Bauer GH |
6217 - 6221 |
Investigation of coevaporated Cu(In,Ga)Se-2 thin films in highly efficient solar cell devices Kaufmann CA, Unold T, Abou-Ras D, Bundesmann J, Neisser A, Klenk R, Scheer R, Sakurai K, Schock HW |
6222 - 6225 |
Characteristics of scattered laser light signals from Cu(In,Ga)Se-2 films Sakurai K, Neumann T, Hesse R, Abou-Ras D, Jablonski P, Neisser A, Kaufmann C, Niki S, Scheer R, Schock HW |
6226 - 6228 |
DC and high-frequency conductivity of CuInSe2 bulk crystals Benabdeslem M, Benslim N, Bechiri L, Mahdjoubi L, Djekoun A, Otmani A, Nouet G, Theobald JG, Fromm M |
6229 - 6232 |
Capacitance profiling in the CIGS solar cells Cwil M, Igalson M, Zabierowski P, Kaufmann CA, Neisser A |
6233 - 6237 |
Comparison of optical and electrical gap of electrodeposited CuIn(S,Se)(2) determined by spectral photo response and I-V-T measurements Djebbour Z, Dubois AM, Darga A, Mencaraglia D, Bazin C, Connolly JP, Guillemoles JF, Lincot D, Canava B, Etcheberry A |
6238 - 6242 |
Comparative study of electroluminescence from Cu(In,Ga)Se-2 and Si solar cells Kirchartz T, Rau U, Kurth M, Mattheis J, Werner JH |
6243 - 6245 |
Time constants of open circuit voltage relaxation in Cu(In,Ga)Se-2 solar cells Rau U, Turcu M, Jasenek A |
6246 - 6251 |
Defect chemistry in CuGaS2 thin films: A photoluminescence study Botha JR, Branch MS, Berndt PR, Leitch AWR, Weber J |
6252 - 6255 |
Monitoring In-Ga interdiffusion during chalcopyrite fortuation in GaxSy-(Cu,In) photovoltaic precursor layers Weber A, Kotschau I, Schock HW |
6256 - 6259 |
Study of thin film CuInS2-on-Cu-tape (CISCuT) solar cells using deep level transient spectroscopy (DLTS) Van Gheluwe J, Clauws P |
6260 - 6264 |
Electrical properties of homogeneous Cu(In,Ga)S-2 films with varied gallium content Kaigawa R, Ohyama A, Wada T, Klenk R |
6265 - 6268 |
Characterization of Cu(In,Ga)S-2 crystals grown from the melt Oishi K, Yoneda K, Yoshida O, Yamazaki M, Jimbo K, Katagiri H, Araki H, Kobayashi S, Tsuboi N |
6269 - 6271 |
Time-resolved study of resonant secondary emission on CuInS2 crystals Wakita K, Ohta Y, Ogushi N |
6272 - 6275 |
Photoluminescence studies of chalcopyrite and orthorhombic AgInS2 thin films deposited by spray pyrolysis technique Aguilera MLA, Hernandez JRA, Trujillo MAG, Lopez MO, Puente GC |
6276 - 6279 |
Numerical modeling of intra-band tunneling for heterojunction solar cells in SCAPS Verschraegen J, Burgelman M |
6280 - 6284 |
Theoretical modelling of intermediate band solar cell materials based on metal-doped chalcopyrite compounds Palacios P, Sanchez K, Conesa JC, Fernandez JJ, Wahnon P |
6285 - 6287 |
Numerical simulation of CuInxGa1-xSe2 solar cells by AMPS-1D Bouloufa A, Djessas K, Zegadi A |