Enhancement in electrical performance of thin-film silicon solar cells based on a micro- and nano-textured zinc oxide electrodes

[1]  Young Tae Chae,et al.  Building energy performance evaluation of building integrated photovoltaic (BIPV) window with semi-transparent solar cells , 2014 .

[2]  G. Tiwari,et al.  Performance of a-Si thin film PV modules with and without water flow: An experimental validation , 2014 .

[3]  Misook Kang,et al.  Design of a photochemical water electrolysis system based on a W-typed dye-sensitized serial solar module for high hydrogen production , 2014 .

[4]  Gabrielle Gaustad,et al.  Identifying critical materials for photovoltaics in the US: A multi-metric approach , 2014 .

[5]  Michele L. Bustamante,et al.  Challenges in assessment of clean energy supply-chains based on byproduct minerals: A case study of tellurium use in thin film photovoltaics , 2014 .

[6]  Yuan Wang,et al.  Performance optimization analyses and parametric design criteria of a dye-sensitized solar cell thermoelectric hybrid device , 2014 .

[7]  Joshua M. Pearce,et al.  Optimizing limited solar roof access by exergy analysis of solar thermal, photovoltaic, and hybrid photovoltaic thermal systems , 2014 .

[8]  J. V. Muñoz,et al.  Analysis of the dependence of the spectral factor of some PV technologies on the solar spectrum distribution , 2014 .

[9]  D. Elizondo,et al.  Multilayer perceptron applied to the estimation of the influence of the solar spectral distribution on thin-film photovoltaic modules , 2013 .

[10]  Hongxing Yang,et al.  Preparation of lead-free nanoglass frit powder for crystalline silicon solar cells , 2013 .

[11]  M. Konagai,et al.  Management of light-trapping effect for a-Si:H/µc-Si:H tandem solar cells using novel substrates, based on MOCVD ZnO and etched white glass , 2013 .

[12]  J. I. Rosell,et al.  Life Cycle Assessment of a Building Integrated Concentrated Photovoltaic scheme , 2013 .

[13]  Rustu Eke,et al.  Monitoring the performance of single and triple junction amorphous silicon modules in two building integrated photovoltaic (BIPV) installations , 2013 .

[14]  Bofei Liu,et al.  Transparent double-period electrode with effective light management for thin film solar cells , 2013 .

[15]  C. Ballif,et al.  Control of CVD-deposited ZnO films properties through water/DEZ ratio: Decoupling of electrode morphology and electrical characteristics , 2012 .

[16]  Xiaodang Zhang,et al.  Effective light trapping in thin film silicon solar cells from textured Al doped ZnO substrates with broad surface feature distributions , 2012 .

[17]  Tao Wang,et al.  Investigation of a broadband TiO2/SiO2 optical thin-film filter for hybrid solar power systems , 2012 .

[18]  Hui Shen,et al.  A novel method to achieve selective emitter for silicon solar cell using low cost pattern-able a-Si thin films as the semi-transparent phosphorus diffusion barrier , 2012 .

[19]  C. Ballif,et al.  Highly transparent ZnO bilayers by LP-MOCVD as front electrodes for thin-film micromorph silicon solar cells , 2012 .

[20]  Christophe Ballif,et al.  Multiscale transparent electrode architecture for efficient light management and carrier collection in solar cells. , 2012, Nano letters.

[21]  Alexei V. Saveliev,et al.  Increasing the solar cell power output by coating with transition metal-oxide nanorods , 2011 .

[22]  C. Ballif,et al.  Control of LPCVD ZnO growth modes for improved light trapping in thin film silicon solar cells , 2011 .

[23]  Ihsanul Afdi Yunaz,et al.  Multi-Layer ZnO Films with High Haze Ratio for Use as Front TCO in Si-Based Thin Film Solar Cells , 2010 .

[24]  C. Ballif,et al.  Polycrystalline ZnO: B grown by LPCVD as TCO for thin film silicon solar cells , 2010 .

[25]  Hui Shen,et al.  The 3-dimensional dye-sensitized solar cell and module based on all titanium substrates , 2010 .

[26]  J. Owens,et al.  Optimization of back reflector for high efficiency hydrogenated nanocrystalline silicon solar cells , 2009 .

[27]  M. Addonizio,et al.  Surface morphology and light scattering properties of plasma etched ZnO:B films grown by LP-MOCVD for silicon thin film solar cells , 2009 .

[28]  Christophe Ballif,et al.  Influence of the substrate geometrical parameters on microcrystalline silicon growth for thin-film solar cells , 2009 .

[29]  Helmut Stiebig,et al.  Transparent conducting oxide films for thin film silicon photovoltaics , 2007 .

[30]  Christophe Ballif,et al.  Opto-electronic properties of rough LP-CVD ZnO:B for use as TCO in thin-film silicon solar cells , 2007 .

[31]  Arvind Shah,et al.  Rough ZnO Layers by LP-CVD Process and their Effect in Improving Performances of Amorphous and Microcrystalline Silicon Solar Cells , 2006 .

[32]  Influence of the substrate's surface morphology and chemical nature on the nucleation and growth of microcrystalline silicon , 2005 .

[33]  Arvind Shah,et al.  Low pressure chemical vapour deposition of ZnO layers for thin-film solar cells: temperature-induced morphological changes , 2005 .

[34]  J. Springer,et al.  TCO and light trapping in silicon thin film solar cells , 2004 .

[35]  M. Zeman,et al.  Optical modelling of thin-film silicon solar cells deposited on textured substrates , 2004 .

[36]  Arvind Shah,et al.  Microcrystalline Silicon and the Impact on Micromorph Tandem Solar Cells , 2002 .

[37]  Y. Ichikawa,et al.  Effect of p/i interface layer on dark J‐V characteristics and Voc in p‐i‐n a‐Si solar cells , 1990 .

[38]  M. Hamdy,et al.  Effect of spectrally selective liquid absorption-filters on silicon solar-cells , 1990 .