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spectral domain optical coherence tomography system with a central wavelength of  (Thorlabs)

 
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    Structured Review

    Thorlabs spectral domain optical coherence tomography system with a central wavelength of
    Spectral Domain Optical Coherence Tomography System With A Central Wavelength Of, supplied by Thorlabs, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/result/spectral domain optical coherence tomography system with a central wavelength of/product/Thorlabs
    Average 90 stars, based on 1 article reviews
    spectral domain optical coherence tomography system with a central wavelength of - by Bioz Stars, 2026-06
    90/100 stars

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    Optical properties of 1 (red) and 2 (blue). (A) Absorbance (straight) and emission (dashed) at 298 K in an acetonitrile (dark) and PMMA matrix (bright). The excitation <t>wavelength</t> was 370 nm for all of the emission measurements. Note that the glass substrate used for the PMMA films has a wavelength cutoff of 310 nm. (B,C) Excitation (straight) and emission (dashed) spectra of 1 and 2 in PMMA at room temperature (dark) and at 4 K (bright).
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    Image Search Results


    Optical properties of 1 (red) and 2 (blue). (A) Absorbance (straight) and emission (dashed) at 298 K in an acetonitrile (dark) and PMMA matrix (bright). The excitation wavelength was 370 nm for all of the emission measurements. Note that the glass substrate used for the PMMA films has a wavelength cutoff of 310 nm. (B,C) Excitation (straight) and emission (dashed) spectra of 1 and 2 in PMMA at room temperature (dark) and at 4 K (bright).

    Journal: Inorganic Chemistry

    Article Title: Time- and Temperature-Resolved Triplet Dynamics in Tungsten Iodide Clusters

    doi: 10.1021/acs.inorgchem.5c02344

    Figure Lengend Snippet: Optical properties of 1 (red) and 2 (blue). (A) Absorbance (straight) and emission (dashed) at 298 K in an acetonitrile (dark) and PMMA matrix (bright). The excitation wavelength was 370 nm for all of the emission measurements. Note that the glass substrate used for the PMMA films has a wavelength cutoff of 310 nm. (B,C) Excitation (straight) and emission (dashed) spectra of 1 and 2 in PMMA at room temperature (dark) and at 4 K (bright).

    Article Snippet: 90 fs laser pulses at a repetition rate of 1 kHz and 800 nm central wavelength were generated with an Astrella-F ultrafast Ti/sapphire amplifier from Coherent.

    Techniques:

    (A) Kinetic traces and monoexponential fits (straight) of ns-TA measurements of 1 (red) and 2 (blue) at 500 nm in acetonitrile and an excitation wavelength of 350 nm at room temperature. The different oxygen concentrations are indicated by the color gradient and range from 0% (argon, dark) to 100% (bright). (B) Oxygen concentration against the reciprocal monoexponential lifetime of 1 (red) and 2 (blue) measured by PL (dark) and TA (bright) spectroscopy. The linear fit is shown with a straight line. (C) Proposed Jabłoski diagram with ISC rates, emission lifetimes, and quenching rates of 1 (red) and 2 (blue) respectively.

    Journal: Inorganic Chemistry

    Article Title: Time- and Temperature-Resolved Triplet Dynamics in Tungsten Iodide Clusters

    doi: 10.1021/acs.inorgchem.5c02344

    Figure Lengend Snippet: (A) Kinetic traces and monoexponential fits (straight) of ns-TA measurements of 1 (red) and 2 (blue) at 500 nm in acetonitrile and an excitation wavelength of 350 nm at room temperature. The different oxygen concentrations are indicated by the color gradient and range from 0% (argon, dark) to 100% (bright). (B) Oxygen concentration against the reciprocal monoexponential lifetime of 1 (red) and 2 (blue) measured by PL (dark) and TA (bright) spectroscopy. The linear fit is shown with a straight line. (C) Proposed Jabłoski diagram with ISC rates, emission lifetimes, and quenching rates of 1 (red) and 2 (blue) respectively.

    Article Snippet: 90 fs laser pulses at a repetition rate of 1 kHz and 800 nm central wavelength were generated with an Astrella-F ultrafast Ti/sapphire amplifier from Coherent.

    Techniques: Concentration Assay, Spectroscopy

    ( a ) Culturable and ( b ) total cells of C. marina biofilms formed on PU (control), PU/FeCy-1 , and PU/FeCy-2 surfaces after 42 days. The asterisks represent statistical differences between PU and the PU/FeCy surfaces ( p -values < 0.05).

    Journal: Molecules

    Article Title: New Cyclam-Based Fe(III) Complexes Coatings Targeting Cobetia marina Biofilms

    doi: 10.3390/molecules30040917

    Figure Lengend Snippet: ( a ) Culturable and ( b ) total cells of C. marina biofilms formed on PU (control), PU/FeCy-1 , and PU/FeCy-2 surfaces after 42 days. The asterisks represent statistical differences between PU and the PU/FeCy surfaces ( p -values < 0.05).

    Article Snippet: Qualitative and quantitative structural characterization of biofilms was determined through OCT analysis (Thorlabs Ganymede Spectral Domain Optical Coherence Tomography system with a central wavelength of 930 nm, Thorlabs GmbH, Dachau, Germany), as reported by Romeu et al. [ , ].

    Techniques: Control

    Representative 3D OCT images of C. marina biofilms formed on PU (control), PU/FeCy-1 , and PU/FeCy-2 surfaces after 42 days. The color scale shows the range of biofilm thickness. All images were obtained in a scan range of 2490 µm × 1512 µm × 600 µm.

    Journal: Molecules

    Article Title: New Cyclam-Based Fe(III) Complexes Coatings Targeting Cobetia marina Biofilms

    doi: 10.3390/molecules30040917

    Figure Lengend Snippet: Representative 3D OCT images of C. marina biofilms formed on PU (control), PU/FeCy-1 , and PU/FeCy-2 surfaces after 42 days. The color scale shows the range of biofilm thickness. All images were obtained in a scan range of 2490 µm × 1512 µm × 600 µm.

    Article Snippet: Qualitative and quantitative structural characterization of biofilms was determined through OCT analysis (Thorlabs Ganymede Spectral Domain Optical Coherence Tomography system with a central wavelength of 930 nm, Thorlabs GmbH, Dachau, Germany), as reported by Romeu et al. [ , ].

    Techniques: Control

    ( a ) Thickness, ( b ) porosity, ( c ) contour coefficient, and ( d ) biovolume of C. marina biofilms formed on PU (control), PU/FeCy-1 , and PU/FeCy-2 surfaces after 42 days. The asterisks represent statistical differences between PU and PU/FeCy surfaces ( p -values < 0.05).

    Journal: Molecules

    Article Title: New Cyclam-Based Fe(III) Complexes Coatings Targeting Cobetia marina Biofilms

    doi: 10.3390/molecules30040917

    Figure Lengend Snippet: ( a ) Thickness, ( b ) porosity, ( c ) contour coefficient, and ( d ) biovolume of C. marina biofilms formed on PU (control), PU/FeCy-1 , and PU/FeCy-2 surfaces after 42 days. The asterisks represent statistical differences between PU and PU/FeCy surfaces ( p -values < 0.05).

    Article Snippet: Qualitative and quantitative structural characterization of biofilms was determined through OCT analysis (Thorlabs Ganymede Spectral Domain Optical Coherence Tomography system with a central wavelength of 930 nm, Thorlabs GmbH, Dachau, Germany), as reported by Romeu et al. [ , ].

    Techniques: Control

    CLSM images of C. marina biofilms on PU (control), PU/FeCy-1 , and PU/FeCy-2 surfaces after 42 days. These representative images were obtained from confocal z -stacks using the IMARIS 9.3.1 software and present an aerial, 3D view of the biofilms, with the shadow projection on the right. The white scale bars represent 40 μm.

    Journal: Molecules

    Article Title: New Cyclam-Based Fe(III) Complexes Coatings Targeting Cobetia marina Biofilms

    doi: 10.3390/molecules30040917

    Figure Lengend Snippet: CLSM images of C. marina biofilms on PU (control), PU/FeCy-1 , and PU/FeCy-2 surfaces after 42 days. These representative images were obtained from confocal z -stacks using the IMARIS 9.3.1 software and present an aerial, 3D view of the biofilms, with the shadow projection on the right. The white scale bars represent 40 μm.

    Article Snippet: Qualitative and quantitative structural characterization of biofilms was determined through OCT analysis (Thorlabs Ganymede Spectral Domain Optical Coherence Tomography system with a central wavelength of 930 nm, Thorlabs GmbH, Dachau, Germany), as reported by Romeu et al. [ , ].

    Techniques: Control, Software