1 |
Fast light-induced metastability and thermal recovery for protocrystalline silicon multilayers proved by sub-bandgap absorption spectra Myong SY Solar Energy, 106, 43, 2014 |
2 |
Unique features of alternately hydrogen-diluted protocrystalline silicon multilayers as wide bandgap and highly stable absorbers of thin-film silicon solar cells Myong SY, Kwon SW Solar Energy Materials and Solar Cells, 116, 182, 2013 |
3 |
p-Type hydrogenated silicon oxide thin film deposited near amorphous to microcrystalline phase transition and its application to solar cells Sriprapha K, Sitthiphol N, Sangkhawong P, Sangsuwan V, Limmanee A, Sritharathikhun J Current Applied Physics, 11(1), S47, 2011 |
4 |
Thermal annealing of protocrystalline a-Si:H Muller TFG, Arendse CJ, Halindintwali S, Knoesen D, Schropp REI Thin Solid Films, 519(14), 4462, 2011 |
5 |
Light induced degradation in nanocrystalline Si films and related solar cells: Role of crystalline fraction Mukhopadhyay S, Goswami R, Ray S Solar Energy Materials and Solar Cells, 93(6-7), 674, 2009 |
6 |
Highly and quickly stabilized p-i-n/p-i-n-type protocrystalline silicon multilayer tandem solar cells Kwak J, Kwon SW, Il Park S, Lim KS Solar Energy Materials and Solar Cells, 92(9), 1067, 2008 |
7 |
Solid phase crystallization of protocrystalline silicon films: Changes in structural and optical properties Goswami R, Chowdhury B, Ray S Thin Solid Films, 516(8), 2306, 2008 |
8 |
Analysis of hydrogenated amorphous silicon thin films and solar cells by means of Fourier Transform Photocurrent Spectroscopy Melskens J, van Elzakker G, Li Y, Zeman M Thin Solid Films, 516(20), 6877, 2008 |
9 |
An update on silicon deposition performed by hot wire CVD Mahan AH Thin Solid Films, 501(1-2), 3, 2006 |
10 |
Phase engineering of a-Si : H solar cells for optimized performance Wronski CR, Collins RW Solar Energy, 77(6), 877, 2004 |