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Research Articles

Rapid Thermal Process for Crystallization Silicon Nitride Films

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Pages 456-464 | Received 19 Mar 2018, Accepted 19 Dec 2018, Published online: 11 Jan 2019

References

  • Taube WR, Kumar A, Saravanan R, et al. Efficiency enhancement of silicon solar cells with silicon nanocrystals embedded in PECVD silicon nitride matrix. Sol Energ Mat Sol Cells. 2012;101:32–35. doi: 10.1016/j.solmat.2012.02.010
  • Lu TZ, Alexe M, Scholz R, et al. Si nanocrystal based memories: effect of the nanocrystal density. J Appl Phys 2006;100:014310. doi: 10.1063/1.2214300
  • Chao DS, Liang JH. Annealing temperature dependence of photoluminescent characteristics of silicon nanocrystals embedded in silicon-rich silicon nitride films grown by PECVD. Nucl Instr Meth Phys Res B. 2013;307:344–348. doi: 10.1016/j.nimb.2012.12.096
  • Kim W, Cho CH, Kim BH, et al. Quantum confinement effect in crystalline silicon quantum dots in silicon nitride grown using SiH4 and NH3. Appl Phys Lett 2006;88:123102. doi: 10.1063/1.2187434
  • Sahu BS, Delachat F, Slaoui A, et al. Effect of annealing treatments on photoluminescence and charge storage mechanism in silicon-rich SiNx:H films. Nanoscale Res Lett 2011;6:178. doi: 10.1186/1556-276X-6-178
  • Green MA, Conibeer G, Cho E-C, et al. Proceedings of the 22nd EU PVSEC, Milan, Italy, 2007, p. 1.
  • Conibeer G, Green M, Cho E-C, et al. Silicon quantum dot nanostructures for tandem photovoltaic cells. Thin Solid Films. 2008;516:6748–6756. doi: 10.1016/j.tsf.2007.12.096
  • Zhao H, Benetti D, Tong X, et al. Efficient and stable tandem luminescent solar concentrators based on carbon dots and perovskite quantum dots. Nano Energ. 2018;50:756–765. doi: 10.1016/j.nanoen.2018.06.025
  • Perez-Wurfl I, Hao X, Gentle A, et al. Si nanocrystal p-i-n diodes fabricated on quartz substrates for third generation solar cell applications. Appl Phys Lett 2009;95:153506. doi: 10.1063/1.3240882
  • Dal Negro L, Yi JH, Kimerling LC, et al. Light emission from silicon-rich nitride nanostructures. Appl Phys Lett 2006;88:183103. doi: 10.1063/1.2191956
  • Torchynska T, Polupan G. Exciton related photoluminescence stimulation in SiC nanocrystals. Superlattices Microstruct 2009;45:222–227. doi: 10.1016/j.spmi.2008.09.012
  • Rosmani CH, Abdullah S, Rusop M. Photoluminescence Characteristics of silicon quantum dots nanoparticles (SQDNs) embedded on Glass surface. Procedia Eng. 2013;56:750–754. doi: 10.1016/j.proeng.2013.03.189
  • Song D, Cho E-C, Conibeer G, et al. Fabrication and characterization of Si nanocrystals in SiC matrix produced by magnetron cosputtering. J Vac Sci Technol B. 2007;25(4):1327–1335. doi: 10.1116/1.2756556
  • Kurokawa Y, Miyajima S, Yamada A, et al. Conference Record of the 2006 IEEE Fourth World Conference on Photovoltaic Energy Conversion, WCPEC-4 1, art. No. 4059581, pp. 138–141, Waikoloa.
  • Molinari M, Rinnert H, Vergnat M. Evolution with the annealing treatments of the photoluminescence mechanisms in a-SiNx:H alloys prepared by reactive evaporation. J Appl Phys 2007;101:123532. doi: 10.1063/1.2749283
  • Scardera G, Puzzer T, Conibeer G, et al. Fourier transform infrared spectroscopy of annealed silicon-rich silicon nitride thin films. J Appl Phys 2008;104:104310. doi: 10.1063/1.3021158
  • Ma D-H, Zhang W-J, Luo R-Y, et al. Effect of Si nanoparticles on electronic transport mechanisms in P-doped silicon-rich silicon nitride/c-Si heterojunction devices. Mater Sci Semicond Process. 2016;50:20–30. doi: 10.1016/j.mssp.2016.04.001
  • Scardera G, Puzzer T, Perez-Wurfl I, et al. The effects of annealing temperature on the photoluminescence from silicon nitride multilayer structures. J Cryst Growth. 2008;310:3680–3684. doi: 10.1016/j.jcrysgro.2008.05.018
  • Nemanič V, Mc Guiness PJ, Daneu N, et al. Hydrogen permeation through silicon nitride films. J Alloys Compd. 2012;539:184–189. doi: 10.1016/j.jallcom.2012.05.110
  • El Amrani A, Bekhtari A, Mahmoudi B, et al. Experimental study of the effect of process parameters on plasma-enhanced chemical vapour deposition of silicon nitride film. Vacuum. 2011;86(4):386–390. doi: 10.1016/j.vacuum.2011.08.003
  • Makaremi N, Schiavoni S, Laura Pisello A, et al. Quantifying the effects of interior surface reflectance on indoor lighting. Energy Procedia. 2017;134:306–316. doi: 10.1016/j.egypro.2017.09.531
  • Panchal AK, Solanki CS. Fabrication of silicon quantum dots in SiNx multilayer using hot-wire CVD. J Cryst Growth. 2009;311:2659–2663. doi: 10.1016/j.jcrysgro.2009.03.013
  • Das D, Kar D. Structural studies of n-type nc-Si–QD thin films for nc-Si solar cells. J Phys Chem Solids. 2017;111:115–122. doi: 10.1016/j.jpcs.2017.07.026
  • Wei W, Xu G, Wang J, et al. Raman spectra of intrinsic and doped hydrogenated nanocrystalline silicon films. Vacuum. 2007;81:656–662. doi: 10.1016/j.vacuum.2006.09.006
  • Daldosso N, Das G, Larcheri S, et al. Silicon nanocrystal formation in annealed silicon-rich silicon oxide films prepared by plasma enhanced chemical vapor deposition. J Appl Phys 2007;101:113510. doi: 10.1063/1.2740335
  • Rolver R, Winkler O, Forst M, et al. Light emission from Si/SiO2 superlattices fabricated by RPECVD. Microelectron Reliab 2005;45:915–918. doi: 10.1016/j.microrel.2004.11.025
  • Torrison L, Tolle J, Smith DJ, et al. Morphological and optical properties of Si nanostructures imbedded in SiO2 and Si3N4 films grown by single source chemical vapor deposition. J Appl Phys 2002;92(12):7475–7480. doi: 10.1063/1.1525046
  • Mishra P, Jain KP. First- and second-order Raman scattering in nanocrystalline silicon. Phys Rev B. 2001;64:073304. doi: 10.1103/PhysRevB.64.073304
  • Torchynska TV, Casas Espinola JL, Vergara Hernandez E, et al. Effect of the stoichiometry of Si-rich silicon nitride thin films on their photoluminescence and structural properties. Thin Solid Films. 2015;581:65–69. doi: 10.1016/j.tsf.2014.11.070
  • Kim BH, Davis RF, Park S-J. Optical property of silicon quantum dots embedded in silicon nitride by thermal annealing. Thin Solid Films. 2010;S18:1744–1746. doi: 10.1016/j.tsf.2009.12.009
  • Haoues H, Bouridah H, Beghoul MR, et al. Formation of silicon nanocrystals by thermal annealing of low-pressure chemical-vapor deposited amorphous SiNx (x=0.16) thin films. Mater Sci Semicond Process. 2013;16(6):1849–1852. doi: 10.1016/j.mssp.2013.07.019
  • Ke W, Feng X, Huang Y. Annealing effects on the size of Si-nanocrystals embedded in bulk SiO. J Cryst Growth. 2011;316:191–195. doi: 10.1016/j.jcrysgro.2010.12.073
  • Mercaldo LV, Esposito EM, Veneri PD, et al. First and second-order Raman scattering in Si nanostructures within silicon nitride. Appl Phys Lett. 2010;97:153112. doi: 10.1063/1.3501133
  • Wan Z, Huang S, Green MA, et al. Rapid thermal annealing and crystallization mechanisms study of silicon nanocrystal in silicon carbide matrix. Nanoscale Res Lett. 2011;6(129):129–136. doi: 10.1186/1556-276X-6-129
  • Hao XJ, Cho E-C, Scardera G, et al. Effects of phosphorus doping on structural and optical properties of silicon nanocrystals in a SiO2 matrix. Thin Solid Films. 2009;517:5646–5652. doi: 10.1016/j.tsf.2009.02.076
  • Meziani S, Moussi A, Outemzabet R, et al. Annealing effect on photoluminescence properties of SiO2/SiNx coating. Int J Nanoparticles. 2013;6(2/3):113–121. doi: 10.1504/IJNP.2013.054986
  • Delachat F. Elaboration and characterization of silicon nanoparticles in silicon nitride for photovoltaic application [PhD thesis]. Strasbourg: ESS-University of Strasbourg; 2010.
  • Carrada M, Zerga A, Amann M, et al. Structural and optical properties of high density Si-ncs synthesized in SiNx:H by remote PECVD and annealing. Mater Sci Eng B. 2008;147:218–221. doi: 10.1016/j.mseb.2007.09.042

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