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- W2074522618 abstract "Abstract Aiming towards a specific application as antireflection coatings (ARC) in Si solar cells, the growth of hydrogenated diamond like carbon (HDLC) films, by RF magnetron sputtering, has been optimized through comprehensive optical and structural studies. Various physical properties of the films e.g., ( I D / I G ) ratio in the Raman spectra, percentage of sp 3 hybridization in XPS spectra, H-content in the network, etc., have been correlated with different ARC application properties e.g., transmittance, reflectance, optical band gap, refractive index, surface roughness, etc. The ARC properties have been optimized on unheated substrates, through systematic variations of RF power, gas flow rate, gas pressure and finally controlled introduction of hydrogen to the DLC network at its most favorable plasma parameters. The optimum HDLC films possess ( T 700 ) max ∼ 95.8%, ( R 700 ) min ∼ 3.87%, ( n 700 ) min ∼ 1.62 along with simultaneous ( E g ) max ∼ 2.53 eV and ∼75.6% of sp 3 hybridization in the C-network, corresponding to a bonded H-content of ∼23 at.%. Encouraging improvements in the ARC properties over the optimized DLC film were obtained with the controlled addition of hydrogen, and the optimum HDLC films appear quite promising for applications in Si solar cells. Systematic materials development has been performed through comprehensive understanding of the parameter space and its optimization, as elaborately discussed." @default.
- W2074522618 created "2016-06-24" @default.
- W2074522618 creator A5051755645 @default.
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- W2074522618 date "2015-08-01" @default.
- W2074522618 modified "2023-09-27" @default.
- W2074522618 title "Anti-reflection coatings for silicon solar cells from hydrogenated diamond like carbon" @default.
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- W2074522618 doi "https://doi.org/10.1016/j.apsusc.2015.03.124" @default.
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