7133 - 7133 |
Proceedings of the EMRS 2010 Spring Meeting Symposium M: Thin Film Chalcogenide Photovoltaic Materials Strasbourg, France Preface Romeo A, Scheer R, Guillemoles JF, Yamada A, Abou-Ras D |
7134 - 7137 |
Thin-film CdTe cells: Reducing the CdTe Plotnikov V, Liu X, Paudel N, Kwon D, Wieland KA, Compaan AD |
7138 - 7141 |
CdTe thin film solar cells with reduced CdS film thickness Krishnakumar V, Han J, Klein A, Jaegermann W |
7142 - 7145 |
CdTe solar cell with industrial Al:ZnO on soda-lime glass Dhere RG, Bonnet-Eymard M, Charlet E, Peter E, Duenow JN, Li JV, Kuciauskas D, Gessert TA |
7146 - 7148 |
Advantages of transparent conducting oxide thin films with controlled permittivity for thin film photovoltaic solar cells Gessert TA, Burst J, Li X, Scott M, Coutts TJ |
7149 - 7152 |
Electrical, photoelectrical, and photoelectrochemical properties of electrodeposited CdTe films subjected to high-energy irradiation Fedotov AK, Ronassi AA, Vo TTV, Mazanik AV, Korolik OV, Rabchynski SM, Ragoisha GA, Streltsov EA |
7153 - 7155 |
Phosphorus implanted cadmium telluride solar cells Kraft C, Bromel A, Schonherr S, Hadrich M, Reislohner U, Schley P, Gobsch G, Goldhahn R, Wesch W, Metzner H |
7156 - 7159 |
Back contact formation in thin cadmium telluride solar cells Hadrich M, Heisler C, Reislohner U, Kraft C, Metzner H |
7160 - 7163 |
Initial and degraded performance of thin film CdTe solar cell devices as a function of copper at the back contact Korevaar BA, Shuba R, Yakimov A, Cao H, Rojo JC, Tolliver TR |
7164 - 7167 |
Passivation properties of nitric/phosphoric etching on CdTe films: Influence of the etching time and nitric acid concentration Vigil-Galan O, Cruz-Orea A, Mejia-Garcia C, Fandino J, Garcia-Sanchez MF |
7168 - 7172 |
Transmission electron microscopy study of dislocations and interfaces in CdTe solar cells Yan YF, Jones KM, Al-Jassim MM, Dhere R, Wu XZ |
7173 - 7175 |
Investigation of the excitonic luminescence band of CdTe solar cells by photoluminescence and photoluminescence excitation spectroscopy Kraft C, Hadrich M, Metzner H, Reislohner U, Schley P, Goldhahn R |
7176 - 7179 |
Photoluminesence studies of CdTe/SnO2 and CdTe/CdS heterojunctions: The influence of oxygen and the CdCl2 heat treatment Vatavu S, Zhao HH, Caraman I, Gasin P, Ferekides C |
7180 - 7183 |
Effect of H2S treatment on properties of CuInS2 thin films deposited by chemical spray pyrolysis at low temperature Karber E, Katerski A, Acik IO, Mikli V, Mere A, Krunks M |
7184 - 7188 |
Characterization of superstrate type CuInS2 solar cells deposited by spray pyrolysis method Ryo T, Nguyen DC, Nakagiri M, Toyoda N, Matsuyoshi H, Ito S |
7189 - 7192 |
Influence of precursor stacking on the absorber growth in Cu(In,Ga)S-2 based solar cells prepared by a rapid thermal process Merdes S, Mainz R, Rodriguez-Alvarez H, Klaer J, Klenk R, Meeder A, Schock HW, Lux-Steiner MC |
7193 - 7196 |
In-situ studies of the recrystallization process of CuInS2 thin films by energy dispersive X-ray diffraction Thomas D, Mainz R, Rodriguez-Alvarez H, Marsen B, Abou-Ras D, Klaus M, Genzel C, Schock HW |
7197 - 7200 |
The influence of gallium on phase transitions during the crystallisation of thin film absorber materials Cu(In,Ga)(S,Se)(2) investigated by in-situ X-ray diffraction Holzing A, Schurr R, Jost S, Palm J, Deseler K, Wellmann P, Hock R |
7201 - 7206 |
A comparative study of the properties of thermally evaporated CuIn2n S-+1(3n+2) (n=0, 1, 2 and 3) thin films Khemiri N, Kanzari M |
7207 - 7211 |
Thinning of CIGS solar cells: Part I: Chemical processing in acidic bromine solutions Bouttemy M, Tran-Van P, Gerard I, Hildebrandt T, Causier A, Pelouard JL, Dagher G, Jehl Z, Naghavi N, Voorwinden G, Dimmler B, Powalla M, Guillemoles JF, Lincot D, Etcheberry A |
7212 - 7215 |
Thinning of CIGS solar cells: Part II: Cell characterizations Jehl Z, Erfurth F, Naghavi N, Lombez L, Gerard I, Bouttemy M, Tran-Van P, Etcheberry A, Voorwinden G, Dimmler B, Wischmann W, Powalla M, Guillemoles JF, Lincot D |
7216 - 7220 |
CIGS thin films, solar cells, and submodules fabricated using a rf-plasma cracked Se-radical beam source Ishizuka S, Yamada A, Shibata H, Fons P, Niki S |
7221 - 7223 |
Fast Cu(In,Ga)Se-2 precursor growth: Impact on solar cell Painchaud T, Barreau N, Arzel L, Kessler J |
7224 - 7227 |
Effect of copper-deficiency on multi-stage co-evaporated Cu(In,Ga)S-2 absorber layers and solar cells Marsen B, Wilhelm H, Steinkopf L, Klemz S, Unold T, Scheer R, Schock HW |
7228 - 7231 |
Influence of Cu off-stoichiometry on wide band gap CIGSe solar cells Marko H, Arzel L, Darga A, Barreau N, Noel S, Mencaraglia D, Kessler J |
7232 - 7236 |
Modification of the three-stage evaporation process for CuIn1-xGaxSe2 absorber deposition Seyrling S, Chirila A, Guttler D, Pianezzi F, Rossbach P, Tiwari AN |
7237 - 7240 |
Influence of the average Se-to-metal overpressure during co-evaporation of Cu(InxGa1-x)Se-2 Wallin E, Jarmar T, Malm U, Edoff M, Stolt L |
7241 - 7244 |
Synthesis of Cu(In,Ga)Se-2 absorber using one-step electrodeposition of Cu-In-Ga precursor Ribeaucourt L, Chassaing E, Savidand G, Lincot D |
7245 - 7249 |
Effect of precursor structure on Cu(InGa)Se-2 formation by reactive annealing Park H, Kim SC, Lee SH, Koo J, Lee SH, Jeon CW, Yoon S, Kim WK |
7250 - 7253 |
Role of Na in reaction pathways and kinetics of CuInSe2 formation from stacked binary precursors Kim SC, Park H, Lee EW, Han JS, Lee SH, Jeon CW, Jung D, Jeong J, Kim WK |
7254 - 7258 |
Preparation of CuGaSe2 absorber layers for thin film solar cells by annealing of efficiently electrodeposited Cu-Ga precursor layers from ionic liquids Steichen M, Larsen J, Gutay L, Siebentritt S, Dale PJ |
7259 - 7263 |
Thin film Cu(In,Ga)Se-2 solar cells processed from solution pastes with polymethyl methacrylate binder Uhl AR, Romanyuk YE, Tiwari AN |
7264 - 7267 |
Fabrication and characterisation of Cu(In,Ga)Se-2 solar cells on polyimide Zachmann H, Puttnins S, Yakushev MV, Luckert F, Martin RW, Karotki AV, Gremenok VF, Mudryi AV |
7268 - 7271 |
Alternative sodium sources for Cu(In,Ga)Se-2 thin-film solar cells on flexible substrates Wuerz R, Eicke A, Kessler F, Rogin P, Yazdani-Assl O |
7272 - 7275 |
Flexible CuInSe2 photovoltaic cells fabricated by non-vacuum techniques Samantilleke AP, Sahal M, Ortiz L, Cerqueira MF, Mari B |
7276 - 7279 |
Near-interface doping by ion implantation in Cu(In,Ga)Se-2 solar cells Haarstrich J, Metzner H, Ronning C, Rissom T, Kaufmann CA, Schock HW, Mannstadt W, Rudigier-Voigt E, Scheumann V |
7280 - 7283 |
Simulation approach for studying the performances of original superstrate CIGS thin films solar cells Bouchama I, Djessas K, Djahli F, Bouloufa A |
7284 - 7287 |
Phases in copper-gallium-metal-sulfide films (metal=titanium, iron, or tin) Marsen B, Klemz S, Landi G, Steinkopf L, Scheer R, Schorr S, Schock HW |
7288 - 7291 |
Optical constants of Zn-doped CuInS2 thin films Ben Rabeh M, Kanzari M |
7292 - 7295 |
Structural characterization of the (AgCu)(InGa)Se-2 thin film alloy system for solar cells Boyle JH, McCandless BE, Hanket GM, Shafarman WN |
7296 - 7299 |
The electronic structure of Cu(In1-xGax)Se-2 alloyed with silver Erslev PT, Lee J, Hanket GM, Shafarman WN, Cohen JD |
7300 - 7303 |
Raman scattering analysis of Cu-poor Cu(In,Ga)Se-2 cells fabricated on polyimide substrates: Effect of Na content on microstructure and phase structure Izquierdo-Roca V, Caballero R, Fontane X, Kaufmann CA, Alvarez-Garcia J, Calvo-Barrio L, Saucedo E, Perez-Rodriguez A, Morante JR, Schock HW |
7304 - 7307 |
Transport properties of CuGaSe2-based thin-film solar cells as a function of absorber composition Rusu M, Bar M, Marron DF, Lehmann S, Schedel-Niedrig T, Lux-Steiner MC |
7308 - 7311 |
Defect levels in CuGaSe2 by modulated photocurrent spectroscopy Krysztopa A, Igalson M, Zabierowski P, Larsen J, Aida Y, Siebentritt S, Gutay L |
7312 - 7316 |
Influence of Ga content on defects in CuInxGa1-xSe2 based solar cell absorbers investigated by sub gap modulated photocurrent and admittance spectroscopy Serhan J, Djebbour Z, Mencaraglia D, Couzinie-Devy F, Barreau N, Kessler J |
7317 - 7320 |
Generation of electrical defects in ion beam assisted deposition of Cu(In,Ga)Se-2 thin film solar cells Zachmann H, Puttnins S, Daume F, Rahm A, Otte K |
7321 - 7323 |
Optical and electrical properties of electron-irradiated Cu(In,Ga)Se-2 solar cells Hirose Y, Warasawa M, Takakura K, Kimura S, Chichibu SF, Ohyama H, Sugiyama M |
7324 - 7327 |
Optoelectronic characteristics of Cu(In,Ga)(S,Se)(2) thin film solar cells obtained from varied chalcogenization processes Knecht R, Knipper M, Ohland J, Riedel I, Parisi J |
7328 - 7331 |
Photoluminescence as a tool for investigations of the junction region in Cu(In,Ga)Se-2-based solar cells Pawlowski M, Zabierowski P, Bacewicz R, Marko H, Barreau N |
7332 - 7336 |
Spatial variations of optoelectronic properties in single crystalline CuGaSe2 thin films studied by photoluminescence Larsen JK, Gutay L, Aida Y, Siebentritt S |
7337 - 7340 |
Carrier polarity reversal with sodium addition in Bridgman-grown CuInSe2 Champness CH, Myers HF, Shih I |
7341 - 7346 |
Nanometer-scale electronic and microstructural properties of grain boundaries in Cu(In,Ga)Se-2 Sadewasser S, Abou-Ras D, Azulay D, Baier R, Balberg I, Cahen D, Cohen S, Gartsman K, Ganesan K, Kavalakkatt J, Li W, Millo O, Rissom T, Rosenwaks Y, Schock HW, Schwarzman A, Unold T |
7347 - 7350 |
Characterization of Cu(InGa)Se-2 grain boundary properties by electron-and tip-probe methods Oonishi S, Kawamura M, Takano N, Hashimoto D, Yamada A, Konagai M |
7351 - 7355 |
Advances in colloidal quantum dot solar cells: The depleted-heterojunction device Kramer IJ, Pattantyus-Abraham AG, Barkhouse AR, Wang XH, Konstantatos G, Debnath R, Levina L, Raabe I, Nazeeruddin MK, Gratzel M, Sargent EH |
7356 - 7359 |
Transport and generation-recombination mechanisms of nonequilibrium charge carriers in ZnO/In2O3/InSe:Cd heterojunctions Cuculescu E, Evtodiev I, Caraman I, Leontie L, Nedeff V, Rusu DI |
7360 - 7363 |
Metal-organic chemical vapor deposition of ultra-thin photovoltaic devices using a pyrite based p-i-n structure Clayton AJ, Irvine SJC, Barrioz V, Brooks WSM, Zoppi G, Forbes I, Rogers KD, Lane DW, Hutchings K, Roncallo S |
7364 - 7368 |
All-chemically deposited Bi2S3/PbS solar cells Moreno-Garcia H, Nair MTS, Nair PK |
7369 - 7373 |
Interdiffusion at the BaCuSeF/ZnTe interface Zakutayev A, Tate J, Xie SJ, Gibbons BJ, Platt HAS, Keszler DA, Barati A, Klein A, Jaegermann W |
7374 - 7377 |
Charge transfer in blends of P3HT and colloidally prepared CuInS2 nanocrystals Kruszynska M, Knipper M, Kolny-Olesiak J, Borchert H, Parisi J |
7378 - 7381 |
Progress towards marketable earth-abundant chalcogenide solar cells Todorov T, Gunawan O, Chey SJ, de Monsabert TG, Prabhakar A, Mitzi DB |
7382 - 7385 |
Cu2ZnSnS4 solar cells prepared with sulphurized dc-sputtered stacked metallic precursors Fernandes PA, Salome PMP, da Cunha AF, Schubert BA |
7386 - 7389 |
Optical characterization of Cu2ZnSnSe4 grown by thermal co-evaporation Park D, Nam D, Jung S, An S, Gwak J, Yoon K, Yun JH, Cheong H |
7390 - 7393 |
Study of optical and structural properties of Cu2ZnSnS4 thin films Leitao JP, Santos NM, Fernandes PA, Salome PMP, da Cunha AF, Gonzalez JC, Matinaga FM |
7394 - 7398 |
Phase composition of selenized Cu2ZnSnSe4 thin films determined by X-ray diffraction and Raman spectroscopy Ganchev M, Iljina J, Kaupmees L, Raadik T, Volobujeva O, Mere A, Altosaar M, Raudoja J, Mellikov E |
7399 - 7402 |
Study of Cu2ZnSnSe4 monograin formation in molten KI starting from binary chalcogenides Klavina I, Kaljuvee T, Timmo K, Raudoja J, Traksmaa R, Altosaar M, Meissner D |
7403 - 7406 |
Photoluminescence and Raman study of Cu2ZnSn(SexS1-x)(4) monograins for photovoltaic applications Grossberg M, Krustok J, Raudoja J, Timmo K, Altosaar M, Raadik T |
7407 - 7411 |
XPS study of CZTSSe monograin powders Danilson M, Altosaar M, Kauk M, Katerski A, Krustok J, Raudoja J |
7412 - 7415 |
Real-time investigations on the formation reactions during annealing of sulfurized Cu-Sn precursors Schurr R, Holzing A, Hock R |
7416 - 7420 |
Assessment of the potential of tin sulphide thin films prepared by sulphurization of metallic precursors as cell absorbers Malaquias J, Fernandes PA, Salome PMP, da Cunha AF |
7421 - 7424 |
SnS thin-films by RF sputtering at room temperature Hartman K, Johnson JL, Bertoni MI, Recht D, Aziz MJ, Scarpulla MA, Buonassisi T |
7425 - 7428 |
Annealing studies and electrical properties of SnS-based solar cells Ogah OE, Reddy KR, Zoppi G, Forbes I, Miles RW |
7429 - 7431 |
Band offset of SnS solar cell structure measured by X-ray photoelectron spectroscopy Sugiyama M, Reddy KTR, Revathi N, Shimamoto Y, Murata Y |
7432 - 7437 |
Chemically deposited thin films of PbSe as an absorber component in solar cell structures Barrios-Salgado E, Nair MTS, Nair PK, Zingaro RA |
7438 - 7443 |
Formation of CuSbS2 and CuSbSe2 thin films via chalcogenisation of Sb-Cu metal precursors Colombara D, Peter LM, Rogers KD, Painter JD, Roncallo S |
7444 - 7448 |
The use of aluminium doped ZnO as transparent conductive oxide for CdS/CdTe solar cells Perrenoud J, Kranz L, Buecheler S, Pianezzi F, Tiwari AN |
7449 - 7452 |
Conductive polymer PEDOT:PSS back contact for CdTe solar cell Jarkov A, Bereznev S, Laes K, Volobujeva O, Traksmaa R, Opik A, Mellikov E |
7453 - 7457 |
Optimization of Ti/TiN/Mo back contact properties for Cu(In,Ga)Se-2 solar cells on polyimide foils Blosch P, Guttler D, Chirila A, Tiwari AN |
7458 - 7463 |
Rocking disc electro-deposition of copper films on Mo/MoSe2 substrates Cummings CY, Frith PE, Zoppi G, Forbes I, Rogers KD, Lane DW, Marken F |
7464 - 7467 |
Influence of an additional carbon layer at the back contact-absorber interface in Cu(In,Ga)Se-2 thin film solar cells Haug V, Quintilla A, Klugius I, Ahlswede E |
7468 - 7471 |
Intrinsic defect complexes in CdTe and ZnTe Carvalho A, Oberg S, Briddon PR |
7472 - 7475 |
Towards an electronic model for CuIn1-xGaxSe2 solar cells Scheer R |
7476 - 7480 |
Baseline model of graded-absorber Cu(In,Ga)Se-2 solar cells applied to cells with Zn1-xMgxO buffer layers Pettersson J, Platzer-Bjorkman C, Zimmermann U, Edoff M |
7481 - 7484 |
Modelling multivalent defects in thin film solar cells Decock K, Khelifi S, Burgelman M |
7485 - 7488 |
Systematic study of the complex structure of N-1 Deep Level Transient Spectroscopy signal in Cu(In,Ga)Se-2 based heterojunctions Zabierowski P, Stankiewicz K, Donmez A, Couzinie-Devy F, Barreau N |
7489 - 7492 |
Sub-bandgap photoconductivity and photocapacitance in CIGS thin films and devices Igalson M, Urbaniak A, Krysztopa A, Aida Y, Caballero R, Edoff M, Siebentritt S |
7493 - 7496 |
Measuring sheet resistance of CIGS solar cell's window layer by spatially resolved electroluminescence imaging Paire M, Lombez L, Guillemoles JF, Lincot D |
7497 - 7502 |
A simulation study of the effect of the diverse valence-band offset and the electronic activity at the grain boundaries on the performance of polycrystalline Cu(In,Ga)Se-2 solar cells Nerat M, Smole F, Topic M |
7503 - 7507 |
Parameterization of CuIn1-xGaxSe2 (x=0, 0.5, and 1) energy bands Chen RZ, Persson C |
7508 - 7512 |
Optical properties of Cu(In,Ga)Se-2 and Cu2ZnSn(S,Se)(4) Zhao HY, Persson C |
7513 - 7516 |
First-principles calculations of vacancy formation in In-free photovoltaic semiconductor Cu2ZnSnSe4 Maeda T, Nakamura S, Wada T |
7517 - 7521 |
Intermediate band position modulated by Zn addition in Ti doped CuGaS2 Seminovski Y, Palacios P, Wahnon P |
7522 - 7525 |
Manufacturing of CdTe thin film photovoltaic modules Bosio A, Menossi D, Mazzamuto S, Romeo N |
7526 - 7529 |
Electrical characterization of small area devices for manufacturing Enzenroth RA, Davies A, Reed S |
7530 - 7533 |
Technological and economical aspects on the influence of reduced Cu(In,Ga)Se-2 thickness and Ga grading for co-evaporated Cu(In,Ga)Se-2 modules Edoff M, Schleussner S, Wallin E, Lundberg O |
7534 - 7536 |
High voltage Cu(In,Ga)S-2 solar modules Meeder A, Schmidt-Weber P, Hornauer U, Forster D, Schubert T, Neisser A, Merdes S, Mainz R, Klenk R |
7537 - 7540 |
Efficiency simulations of thin film chalcogenide photovoltaic cells for different indoor lighting conditions Minnaert B, Veelaert P |
7541 - 7544 |
Low-cost ZnO:Al transparent contact by reactive rotatable magnetron sputtering for Cu(In,Ga)Se-2 solar modules Menner R, Hariskos D, Linss V, Powalla M |
7545 - 7548 |
Measurement of the zinc oxide-molybdenum specific contact resistance for applications in Cu(In,Ga)Se-2-technology Oertel M, Gotz S, Cieslak J, Haarstrich J, Metzner H, Wesch W |
7549 - 7552 |
Comparison of charge distributions in CIGS thin-film solar cells with ZnS/(Zn,Mg)O and CdS/i-ZnO buffers Witte W, Hariskos D, Powalla M |
7553 - 7555 |
Investigation of Cu(In,Ga)Se-2/In2S3 diffuse interface by Raman scattering Laurencic C, Arzel L, Couzinie-Devy F, Barreau N |
7556 - 7559 |
Influence of substrate temperature, growth rate and TCO substrate on the properties of CSS deposited CdS thin films Schaffner J, Feldmeier E, Swirschuk A, Schimper HJ, Klein A, Jaegermann W |
7560 - 7563 |
Interface formation between CuIn1-xGaxSe2 absorber and In2S3 buffer layer deposited by ultrasonic spray pyrolysis Buecheler S, Pianezzi F, Fella C, Chirila A, Decock K, Burgelman M, Tiwari AN |
7564 - 7567 |
AZO/ATO double-layered transparent conducting electrode: A thermal stability study Montero J, Guillen C, Herrero J |
7568 - 7571 |
Sputtered ZnO-based buffer layer for band offset control in Cu(In,Ga)Se-2 solar cells Minemoto T, Okamoto A, Takakura H |
7572 - 7574 |
Effect of substrate temperature on the properties of Al-doped ZnO films sputtered from aerogel nanopowders for solar cells applications Ben Ayadi Z, El Mir L, Djessas K, Alaya S |
7575 - 7578 |
Fast chemical bath deposition of Zn(O,S) buffer layers for Cu(In,Ga)Se-2 solar cells Buffiere M, Harel S, Arzel L, Deudon C, Barreau N, Kessler J |
7579 - 7582 |
Fluorine doped ZnO thin films by RF magnetron sputtering Treharne RE, Durose K |
7583 - 7586 |
Characterisation of chemical bath deposited CdS thin films on different substrates using electrolyte contacts Samantilleke AP, Cerqueira MF, Heavens S, Warren P, Dharmadasa IM, Muftah GEA, Silva CJR, Mari B |
7587 - 7591 |
Modification of optical and electrical properties of chemical bath deposited CdS using plasma treatments Gonzalez G, Krishnan B, Avellaneda D, Castillo GA, Das Roy TK, Shaji S |
7592 - 7595 |
Synthesis of conducting Zn1-xMgxO: Al layers by spray pyrolysis for photovoltaic application Prathap P, Revathi N, Reddy AS, Subbaiah YPV, Reddy KTR |
7596 - 7599 |
Comparison between the structural, morphological and optical properties of CdS layers prepared by Close Space Sublimation and RF magnetron sputtering for CdTe solar cells Feldmeier EM, Fuchs A, Schaffner J, Schimper HJ, Klein A, Jaegermann W |
7600 - 7605 |
Chemical deposition methods for Cd-free buffer layers in CI(G)S solar cells: Role of window layers Naghavi N, Renou G, Bockelee V, Donsanti F, Genevee P, Jubault M, Guillemoles JF, Lincot D |
7606 - 7610 |
Investigation of the metastability behavior of CIGS based solar cells with ZnMgO-Zn (S,O,OH) window-buffer layers Serhan J, Djebbour Z, Favre W, Migan-Dubois A, Darga A, Mencaraglia D, Naghavi N, Renou G, Guillemoles JF, Lincot D |
7611 - 7614 |
Structural, electrical and optical properties of carbon-doped CdS thin films prepared by pulsed-laser deposition Orlianges JC, Champeaux C, Dutheil P, Catherinot A, Mejean TM |
7615 - 7619 |
Optical constants of Na-In2S3 thin films prepared by vacuum thermal evaporation technique Timoumi A, Bouzouita H, Rezig B |