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Absorption spectra in <t>the</t> <t>UV–Vis</t> region (200–700 nm) of the Tetraselmis tetrahele extracts with (A) UAE and (B) maceration. The peak at 337 nm suggests UV-absorbing compound, bands at 440 nm and 664 nm correspond to chlorophyll a , and the peak at 466 nm is associated with carotenoids. brief title: Absorption spectra of Tetraselmis tetrahele extracts.
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Photothermal and catalytic performance of various samples under NIR irradiation (808 nm, 1.00 W cm −2 ). (A) Photothermal performance in PBS: (i) infrared thermographic images; (ii) photothermal temperature rise curve; (ii-v) photothermal cycle curve. (B) <t>(i)</t> <t>UV–vis</t> spectra of different samples, (ii) yellow line: temperature-time profile of a single thermal cycle for the MnO X -3 sample under NIR treatment, green line: linear correlation between time and the negative natural logarithm of θ (−Lnθ). (C) GSH depletion test. (D) TMB experiment for the detection of ⋅OH produced by catalysis of the sample to H 2 O 2 (pH = 6.2) (i) without and (ii) with NIR treatment. (E) Fluorescence staining image of ROS in 143B cells. (n ≥ 3, ∗∗∗ p < 0.001).
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Photothermal and catalytic performance of various samples under NIR irradiation (808 nm, 1.00 W cm −2 ). (A) Photothermal performance in PBS: (i) infrared thermographic images; (ii) photothermal temperature rise curve; (ii-v) photothermal cycle curve. (B) <t>(i)</t> <t>UV–vis</t> spectra of different samples, (ii) yellow line: temperature-time profile of a single thermal cycle for the MnO X -3 sample under NIR treatment, green line: linear correlation between time and the negative natural logarithm of θ (−Lnθ). (C) GSH depletion test. (D) TMB experiment for the detection of ⋅OH produced by catalysis of the sample to H 2 O 2 (pH = 6.2) (i) without and (ii) with NIR treatment. (E) Fluorescence staining image of ROS in 143B cells. (n ≥ 3, ∗∗∗ p < 0.001).
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JASCO Inc v 770 uv visible nir spectrophotometer
Photothermal and catalytic performance of various samples under NIR irradiation (808 nm, 1.00 W cm −2 ). (A) Photothermal performance in PBS: (i) infrared thermographic images; (ii) photothermal temperature rise curve; (ii-v) photothermal cycle curve. (B) <t>(i)</t> <t>UV–vis</t> spectra of different samples, (ii) yellow line: temperature-time profile of a single thermal cycle for the MnO X -3 sample under NIR treatment, green line: linear correlation between time and the negative natural logarithm of θ (−Lnθ). (C) GSH depletion test. (D) TMB experiment for the detection of ⋅OH produced by catalysis of the sample to H 2 O 2 (pH = 6.2) (i) without and (ii) with NIR treatment. (E) Fluorescence staining image of ROS in 143B cells. (n ≥ 3, ∗∗∗ p < 0.001).
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Absorption spectra in the UV–Vis region (200–700 nm) of the Tetraselmis tetrahele extracts with (A) UAE and (B) maceration. The peak at 337 nm suggests UV-absorbing compound, bands at 440 nm and 664 nm correspond to chlorophyll a , and the peak at 466 nm is associated with carotenoids. brief title: Absorption spectra of Tetraselmis tetrahele extracts.

Journal: Ultrasonics Sonochemistry

Article Title: Green extraction approach for green microalga Tetraselmis tetrahele : Enhanced phenolic yield and bioactivity via Ultrasound-Assisted extraction

doi: 10.1016/j.ultsonch.2026.107774

Figure Lengend Snippet: Absorption spectra in the UV–Vis region (200–700 nm) of the Tetraselmis tetrahele extracts with (A) UAE and (B) maceration. The peak at 337 nm suggests UV-absorbing compound, bands at 440 nm and 664 nm correspond to chlorophyll a , and the peak at 466 nm is associated with carotenoids. brief title: Absorption spectra of Tetraselmis tetrahele extracts.

Article Snippet: Total carotenoids and chlorophyll contents of microalgal extract (1 mg/mL) were determined according to Lichtenthaler and Buschmann at 470, 648, and 664 nm using a UV–Vis spectrophotometer (V-770ST, Jasco).

Techniques:

Photothermal and catalytic performance of various samples under NIR irradiation (808 nm, 1.00 W cm −2 ). (A) Photothermal performance in PBS: (i) infrared thermographic images; (ii) photothermal temperature rise curve; (ii-v) photothermal cycle curve. (B) (i) UV–vis spectra of different samples, (ii) yellow line: temperature-time profile of a single thermal cycle for the MnO X -3 sample under NIR treatment, green line: linear correlation between time and the negative natural logarithm of θ (−Lnθ). (C) GSH depletion test. (D) TMB experiment for the detection of ⋅OH produced by catalysis of the sample to H 2 O 2 (pH = 6.2) (i) without and (ii) with NIR treatment. (E) Fluorescence staining image of ROS in 143B cells. (n ≥ 3, ∗∗∗ p < 0.001).

Journal: Materials Today Bio

Article Title: MnO x -armored magnesium implants for anti-osteosarcoma and biofilm eradication by charge-transfer interference

doi: 10.1016/j.mtbio.2026.102817

Figure Lengend Snippet: Photothermal and catalytic performance of various samples under NIR irradiation (808 nm, 1.00 W cm −2 ). (A) Photothermal performance in PBS: (i) infrared thermographic images; (ii) photothermal temperature rise curve; (ii-v) photothermal cycle curve. (B) (i) UV–vis spectra of different samples, (ii) yellow line: temperature-time profile of a single thermal cycle for the MnO X -3 sample under NIR treatment, green line: linear correlation between time and the negative natural logarithm of θ (−Lnθ). (C) GSH depletion test. (D) TMB experiment for the detection of ⋅OH produced by catalysis of the sample to H 2 O 2 (pH = 6.2) (i) without and (ii) with NIR treatment. (E) Fluorescence staining image of ROS in 143B cells. (n ≥ 3, ∗∗∗ p < 0.001).

Article Snippet: The absorbance of the samples at 808 nm was measured using a solid-state visible-ultraviolet (UV–vis) spectrophotometer (UH4150, Hitachi, Japan), and the photothermal conversion efficiencies were calculated by the formula reported in the literature [ ].

Techniques: Irradiation, Produced, Fluorescence, Staining