Nature Communications, ISSN 2041-1723, 02/2017, Volume 8, Issue 1, p. 14417
Photon recycling, that is, iterative self-absorption and re-emission by the photoactive layer itself, has been speculated to contribute to the high...
SOLAR-CELLS | PHOTOLUMINESCENCE | DEPOSITION | MULTIDISCIPLINARY SCIENCES | GROWTH | MU-S | DIFFUSION | SELF-ABSORPTION | HALIDE PEROVSKITES | GAAS | DOUBLE HETEROSTRUCTURES
SOLAR-CELLS | PHOTOLUMINESCENCE | DEPOSITION | MULTIDISCIPLINARY SCIENCES | GROWTH | MU-S | DIFFUSION | SELF-ABSORPTION | HALIDE PEROVSKITES | GAAS | DOUBLE HETEROSTRUCTURES
Journal Article
Optics Express, ISSN 1094-4087, 11/2018, Volume 26, Issue 23, pp. 30409 - 30419
Fiber-optic laser-induced breakdown spectroscopy (FO-LIBS) has been employed in many applications because of the flexibility of optical fiber cable. However,...
CALIBRATION | ELEMENTS | SELF-ABSORPTION | OPTICS | EMISSION | LIBS | LINES
CALIBRATION | ELEMENTS | SELF-ABSORPTION | OPTICS | EMISSION | LIBS | LINES
Journal Article
Spectrochimica Acta - Part B Atomic Spectroscopy, ISSN 0584-8547, 05/2019, Volume 155, pp. 24 - 33
Laser induced breakdown spectroscopy (LIBS) is an effective technique to obtain quantitative concentration information for the fuel injection and combustion...
Self-absorption | Equivalence ratio | Gas temperature effect | Fuel injection | LIBS
Self-absorption | Equivalence ratio | Gas temperature effect | Fuel injection | LIBS
Journal Article
IEEE Transactions on Nuclear Science, ISSN 0018-9499, 10/2011, Volume 58, Issue 5, pp. 2519 - 2527
Journal Article
Journal of Analytical Atomic Spectrometry, ISSN 0267-9477, 8/2017, Volume 32, Issue 8, pp. 1519 - 1526
The temporal evolution of doublet lines intensity ratio, plasma temperature ( T ) and electron density ( N e ) of different radial parts of aluminum plasma as...
INDUCED BREAKDOWN SPECTROSCOPY | CHEMISTRY, ANALYTICAL | EMISSION-LINES | SELF-ABSORPTION | SPECTROSCOPY
INDUCED BREAKDOWN SPECTROSCOPY | CHEMISTRY, ANALYTICAL | EMISSION-LINES | SELF-ABSORPTION | SPECTROSCOPY
Journal Article
Spectrochimica Acta - Part B Atomic Spectroscopy, ISSN 0584-8547, 12/2017, Volume 138, pp. 31 - 42
This paper reviews methods to compensate for matrix effects and self-absorption during quantitative analysis of compositions of solids measured using Laser...
Laser induced breakdown spectroscopy (LIBS) | Self-absorption | Matrix effect | Quantitative analysis
Laser induced breakdown spectroscopy (LIBS) | Self-absorption | Matrix effect | Quantitative analysis
Journal Article
Journal of Analytical Atomic Spectrometry, ISSN 0267-9477, 2018, Volume 33, Issue 2, pp. 205 - 209
Laser-induced breakdown spectroscopy (LIBS) is an atomic emission spectrometry technique for material component analysis. However, the spectral signal...
Journal Article
OPTICS EXPRESS, ISSN 1094-4087, 07/2015, Volume 23, Issue 15, pp. A858 - A867
To enhance the performance of luminescent solar concentrator (LSC), there is an increased need to search novel emissive materials with broad absorption and...
ENERGY-CONVERSION | PERFORMANCE | LIGHT | COLLECTORS | SELF-ABSORPTION | OPTICS | SEMICONDUCTOR NANOCRYSTALS | EFFICIENCY | ELECTROLUMINESCENCE
ENERGY-CONVERSION | PERFORMANCE | LIGHT | COLLECTORS | SELF-ABSORPTION | OPTICS | SEMICONDUCTOR NANOCRYSTALS | EFFICIENCY | ELECTROLUMINESCENCE
Journal Article
OPTICS EXPRESS, ISSN 1094-4087, 10/2019, Volume 27, Issue 22, pp. 32184 - 32192
Self-absorption-free laser-induced breakdown spectroscopy (SAF-LIBS) can directly obtain the applicable quasi-optically thin lines by determining the optimal...
INDUCED BREAKDOWN SPECTROSCOPY | SELF-ABSORPTION | OPTICS | SPECTRAL-LINE | ALUMINUM EMISSION-LINES
INDUCED BREAKDOWN SPECTROSCOPY | SELF-ABSORPTION | OPTICS | SPECTRAL-LINE | ALUMINUM EMISSION-LINES
Journal Article
Optics Express, ISSN 1094-4087, 09/2018, Volume 26, Issue 18, pp. 22926 - 22933
The calibration-free laser-induced breakdown spectroscopy (CF-LIBS) and its variations are low cost, short time consumption, and high adaptability. However,...
PRESSURE | QUANTIFICATION | SOIL | SELF-ABSORPTION | INDUCED PLASMA | SAMPLES | OPTICS | QUANTITATIVE-ANALYSIS | LIBS
PRESSURE | QUANTIFICATION | SOIL | SELF-ABSORPTION | INDUCED PLASMA | SAMPLES | OPTICS | QUANTITATIVE-ANALYSIS | LIBS
Journal Article
Applied Spectroscopy, ISSN 0003-7028, 4/2012, Volume 66, Issue 4, pp. 347 - 419
The first part of this two-part review focused on the fundamental and diagnostics aspects of laser-induced plasmas, only touching briefly upon concepts such as...
Double-pulse LIBS | Applications | Hyphenated methods | Microanalysis | Instrumentation | Calibration | LIBS | Multi-pulse LIBS | Analytical sensitivity | Remote detection | Laser-induced breakdown spectroscopy | Limits of detection | Matrix effects | Signal-tonoise ratio | Chemometrics | OPTICAL-EMISSION SPECTROSCOPY | X-RAY-FLUORESCENCE | SOLID ORGANIC-COMPOUNDS | INDUCTIVELY-COUPLED PLASMA | ABLATION MASS-SPECTROMETRY | OCEANIC PRESSURES INTERRELATIONSHIP | SELF-ABSORPTION COEFFICIENTS | Signal-to-noise ratio | MEASURING DETECTION LIMITS | QUANTITATIVE ELEMENTAL ANALYSIS | INSTRUMENTS & INSTRUMENTATION | SPECTROSCOPY | STANDARD-LESS ANALYSIS
Double-pulse LIBS | Applications | Hyphenated methods | Microanalysis | Instrumentation | Calibration | LIBS | Multi-pulse LIBS | Analytical sensitivity | Remote detection | Laser-induced breakdown spectroscopy | Limits of detection | Matrix effects | Signal-tonoise ratio | Chemometrics | OPTICAL-EMISSION SPECTROSCOPY | X-RAY-FLUORESCENCE | SOLID ORGANIC-COMPOUNDS | INDUCTIVELY-COUPLED PLASMA | ABLATION MASS-SPECTROMETRY | OCEANIC PRESSURES INTERRELATIONSHIP | SELF-ABSORPTION COEFFICIENTS | Signal-to-noise ratio | MEASURING DETECTION LIMITS | QUANTITATIVE ELEMENTAL ANALYSIS | INSTRUMENTS & INSTRUMENTATION | SPECTROSCOPY | STANDARD-LESS ANALYSIS
Journal Article
ACS Nano, ISSN 1936-0851, 04/2014, Volume 8, Issue 4, pp. 3461 - 3467
Optical concentration can lower the cost of solar energy conversion by reducing photovoltaic cell area and increasing photovoltaic efficiency. Luminescent...
solar concentrators | solar energy | transparent solar collector | doped nanocrystals | LOSSES | ENERGY | PERFORMANCE | MATERIALS SCIENCE, MULTIDISCIPLINARY | CHEMISTRY, PHYSICAL | NANOSCIENCE & NANOTECHNOLOGY | CHEMISTRY, MULTIDISCIPLINARY | QUANTUM DOTS | PERYLENE DYES | SELF-ABSORPTION | EFFICIENCY | Solar cells | Nanocrystals | Concentrators | Semiconductors | Photovoltaic cells | Phosphors | Energy measurement | Nanostructure
solar concentrators | solar energy | transparent solar collector | doped nanocrystals | LOSSES | ENERGY | PERFORMANCE | MATERIALS SCIENCE, MULTIDISCIPLINARY | CHEMISTRY, PHYSICAL | NANOSCIENCE & NANOTECHNOLOGY | CHEMISTRY, MULTIDISCIPLINARY | QUANTUM DOTS | PERYLENE DYES | SELF-ABSORPTION | EFFICIENCY | Solar cells | Nanocrystals | Concentrators | Semiconductors | Photovoltaic cells | Phosphors | Energy measurement | Nanostructure
Journal Article