Search results for "Diode"

showing 10 items of 469 documents

Time-Gated Raman Spectroscopy for Quantitative Determination of Solid-State Forms of Fluorescent Pharmaceuticals

2018

Raman spectroscopy is widely used for quantitative pharmaceutical analysis, but a common obstacle to its use is sample fluorescence masking the Raman signal. Time-gating provides an instrument-based method for rejecting fluorescence through temporal resolution of the spectral signal and allows Raman spectra of fluorescent materials to be obtained. An additional practical advantage is that analysis is possible in ambient lighting. This study assesses the efficacy of time-gated Raman spectroscopy for the quantitative measurement of fluorescent pharmaceuticals. Time-gated Raman spectroscopy with a 128 X (2) X 4 CMOS SPAD detector was applied for quantitative analysis of ternary mixtures of sol…

Time Factorsspektroskopia116 Chemical sciencesAnalytical chemistry02 engineering and technologySpectrum Analysis Raman01 natural sciencesSignalAnalytical Chemistrysymbols.namesakeTime domainLeast-Squares Analysista116DETECTORFluorescent DyesSUPPRESSIONta113ta114Chemistry010401 analytical chemistryDetectorMIXTURESSENSORPIROXICAMRESONANCE021001 nanoscience & nanotechnologyRAY-POWDER DIFFRACTIONFluorescence0104 chemical sciencesSPADPharmaceutical PreparationsPHOTON AVALANCHE-DIODETemporal resolutionRaman spectroscopysymbolsCRYSTALLIZATION0210 nano-technologyRaman spectroscopyTernary operationQuantitative analysis (chemistry)
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Digitizing data acquisition and time-of-flight pulse processing for ToF-ERDA

2016

A versatile system to capture and analyze signals from multi channel plate (MCP) based time-of-flight detectors and ionization based energy detectors such as silicon diodes and gas ionization chambers (GIC) is introduced. The system is based on commercial digitizers and custom software. It forms a part of a ToF-ERDA spectrometer, which has to be able to detect recoil atoms of many different species and energies. Compared to the currently used analogue electronics the digitizing system provides comparable time-of-flight resolution and improved hydrogen detection efficiency, while allowing the operation of the spectrometer be studied and optimized after the measurement. The hardware, data acq…

ToF-ERDANuclear and High Energy PhysicsMaterials sciencedata acquisitionPhysics::Instrumentation and DetectorsIon beam analysisAnalytical chemistrytime-of-flight01 natural sciences010305 fluids & plasmasdigitizerOpticsData acquisitionIonization0103 physical sciencesInstrumentationDiodeta114SpectrometerAnalogue electronics010308 nuclear & particles physicsbusiness.industryDetectorTime of flightCustom softwarebusinesstiedonhankinta
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A Compact SPICE Model for Organic TFTs and Applications to Logic Circuit Design

2016

This work introduces a compact DC model developed for organic thin film transistors (OTFTs) and its SPICE implementation. The model relies on a modified version of the gradual channel approximation that takes into account the contact effects, occurring at nonohmic metal/organic semiconductor junctions, modeling them as reverse biased Schottky diodes. The model also comprises channel length modulation and scalability of drain current with respect to channel length. To show the suitability of the model, we used it to design an inverter and a ring oscillator circuit. Furthermore, an experimental validation of the OTFTs has been done at the level of the single device as well as with a discrete-…

Transistor modelMaterials scienceFlexible electronics; organic thin film transistors; SPICE modelingSpiceSemiconductor device modelingHardware_PERFORMANCEANDRELIABILITY02 engineering and technologyRing oscillatorIntegrated circuit01 natural scienceslaw.inventionComputer Science::Hardware ArchitectureComputer Science::Emerging Technologieslaw0103 physical sciencesElectronic engineeringHardware_INTEGRATEDCIRCUITSElectrical and Electronic EngineeringFlexible electronics010302 applied physicsChannel length modulationbusiness.industryTransistorSchottky diodeCondensed Matter::Mesoscopic Systems and Quantum Hall Effect021001 nanoscience & nanotechnologyFlexible electronicsComputer Science Applicationsorganic thin film transistorsLogic gateSPICE modelingInverterOptoelectronics0210 nano-technologybusinessHardware_LOGICDESIGNIEEE Transactions on Nanotechnology
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ChemInform Abstract: Luminescent Ionic Transition Metal Complexes for Light-Emitting Electrochemical Cells

2012

Higher efficiency in the end-use of energy requires substantial progress in lighting concepts. All the technologies under development are based on solid-state electroluminescent materials and belong to the general area of solid-state lighting (SSL). The two main technologies being developed in SSL are light-emitting diodes (LEDs) and organic light-emitting diodes (OLEDs), but in recent years, light-emitting electrochemical cells (LECs) have emerged as an alternative option. The luminescent materials in LECs are either luminescent polymers together with ionic salts or ionic species, such as ionic transition-metal complexes (iTMCs). Cyclometalated complexes of IrIII are by far the most utiliz…

Transition metallawChemistryOLEDIonic bondingNanotechnologyGeneral MedicineElectroluminescenceLuminescenceDiodeLight-emitting diodelaw.inventionElectrochemical cellChemInform
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ChemInform Abstract: Hybrid Organic-Inorganic Light-Emitting Diodes

2011

The demonstration of colour tunability and high efficiency has brought organic light-emitting diodes (OLEDs) into the displays and lighting market. However, high production costs due to expensive deposition techniques and the use of reactive materials still limit their market entry, highlighting the need for novel concepts. This has driven the research towards the integration of both organic and inorganic materials into devices that benefit from their respective peculiar properties. The most representative example of this tendency is the application of metal oxides in organic optoelectronics. Metal oxides combine properties such as high transparency, good electrical conductivities, tuneable…

Transparency (projection)ChemistrylawOrganic inorganicElectrodeOLEDDeposition (phase transition)General MedicineEngineering physicsReactive materialDiodeLight-emitting diodelaw.inventionChemInform
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Real-time measurements of Volcanic Gases based by Infrared Spectroscopy

2014

Near-infrared Tunable Diode Lasers have recently found increased usage in atmospheric chemistry and air monitoring research, but applications in Volcanology are still limited to a few examples. The Tunable Diode Laser Spectroscopy technique (TDLS) relies on measuring the absorbance at specific wavelengths due to the absorption of IR radiation by a target gas. Here, we report on the application of the GasFinder 2.0, a commercial infrared laser-receiver unit operating in the 1.3-1.7 m wavelength range, to measuring CO2 concentrations and fluxes in volcanic gas emissions. Our field tests were conducted at Campi Flegrei volcano (near Pozzuoli, Southern Italy), where the GasFinder was used (duri…

Tunable Diode Lasers
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Frequency-modulation spectroscopy with blue diode lasers

2000

Frequency-modulation spectroscopy provides ultrasensitive absorption measurements. The technique is especially adaptable to diode lasers, which can be modulated easily, and has been used extensively in the near-infrared and infrared spectral regions. The availability of blue diode lasers now means that the accessible wavelength region can be increased. We successfully demonstrate wavelength-modulation spectroscopy and two-tone frequency-modulation spectroscopy for the weak second resonance line of potassium at 404.8 nm and for the transition at 405.8 nm in lead, starting from the thermally populated 6p(2) P-3(2) metastable level, information on the modulation parameters is obtained with a f…

Tunable diode laser absorption spectroscopyMaterials scienceAbsorption spectroscopyInfraredbusiness.industryMaterials Science (miscellaneous)Atom and Molecular Physics and OpticsInfrared spectroscopyLaserIndustrial and Manufacturing Engineeringlaw.inventionOpticslawOptoelectronicsBusiness and International ManagementTime-resolved spectroscopyLaser-induced fluorescencebusinessSpectroscopy
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Subpicosecond Laser Spectroscopy of Blue-Light-Induced Absorption in KNbO3 and LiNbO3

2000

Pulses of 427-nm light from am amplified Ti:sapphire frequency-doubled laser are absorbed in two-photon band-gap excitations of KNbO3 and LiNbO3. Induced absorption spectra measured in the visible and recently extended in the infrared have been recorded as a function of delay from 0 to 250 ps after two-photon blue excitation. Samples include stoichiometric as well as congruent LiNbO3. Comparison is made to transient absorption in the nanosecond and longer time range induced by electron pulses of~10 ns width and 270 keV energy. Parts of the absorption can be attributed to bound and free polarons, including the intrinsic electron polaron.

Tunable diode laser absorption spectroscopyMaterials scienceAbsorption spectroscopylawInfraredUltrafast laser spectroscopyNanosecondAtomic physicsSpectroscopyAbsorption (electromagnetic radiation)Laserlaw.invention
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Violet Diode Laser in Time-Resolved Stored-Ion Spectroscopy

2004

Lifetime measurements of the metastable 3d D-2(3/2) level in singly charged calcium were performed using the newly developed violet diode laser operated in an external cavity arrangement. The laser was employed on stored ions at the CRYRING facility to optically pump the resonance line at 397 nm. In combination with laser probing at 866 nm this detection scheme gave the possibility to record the lifetime of this level. which has a radiative lifetime of about 1 s.

Tunable diode laser absorption spectroscopyMaterials sciencebusiness.industryCondensed Matter PhysicsLaserAtomic and Molecular Physics and OpticsIonlaw.inventionX-ray laserlawMetastabilityRadiative transferOptoelectronicsbusinessSpectroscopyMathematical PhysicsDiodePhysica Scripta
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REAL-TIME MEASUREMENT OF VOLCANIC GASES BASED ON INFRARED SPECTROSCOPY

The interpretation of volcanic gas datasets offers key information to build/validate geological models relevant to a variety of volcanic processes and behaviours, including eruptions. Major efforts have therefore been spent in recent years to improve our ability to measure volcanic gas compositions and fluxes. In the last decades, near-infrared room-temperature diode lasers, though in an experimental phase, are finding applications in volcanic gas studies. In this PhD dissertation, I use the GasFinder 2.0, a commercial tunable diode infrared laser transmitter-receiver unit, operating in the 1.3-1.7 m wavelength range, in the attempt to measure CO2 mixing ratios and fluxes in volcanic gas e…

VOLCANIC CARBON DIOXIDE FLUXTUNABLE DIODE LASERINFRARED SPECTROSCOPYSettore GEO/08 - Geochimica E Vulcanologia
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