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oxycodone hydrochloride powder  (Toronto Research Chemicals)


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    Toronto Research Chemicals oxycodone hydrochloride powder
    Characterization of the Nafion/SWCNT electrode. (A) Nafion concentration. 5 μM <t>oxycodone</t> with SWCNT with 2.5% Nafion and 5% Nafion. (B) Accumulation time. 5 μM oxycodone measured with SWCNT 2.5% Nafion with accumulation times 0, 5, 10, and 15 min.
    Oxycodone Hydrochloride Powder, supplied by Toronto Research Chemicals, used in various techniques. Bioz Stars score: 91/100, based on 2 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/oxycodone+hydrochloride+powder/pmc07735650-53-0-10?v=Toronto+Research+Chemicals
    Average 91 stars, based on 2 article reviews
    oxycodone hydrochloride powder - by Bioz Stars, 2026-07
    91/100 stars

    Images

    1) Product Images from "Electrochemical Detection of Oxycodone and Its Main Metabolites with Nafion-Coated Single-Walled Carbon Nanotube Electrodes"

    Article Title: Electrochemical Detection of Oxycodone and Its Main Metabolites with Nafion-Coated Single-Walled Carbon Nanotube Electrodes

    Journal: Analytical Chemistry

    doi: 10.1021/acs.analchem.0c00450

    Characterization of the Nafion/SWCNT electrode. (A) Nafion concentration. 5 μM oxycodone with SWCNT with 2.5% Nafion and 5% Nafion. (B) Accumulation time. 5 μM oxycodone measured with SWCNT 2.5% Nafion with accumulation times 0, 5, 10, and 15 min.
    Figure Legend Snippet: Characterization of the Nafion/SWCNT electrode. (A) Nafion concentration. 5 μM oxycodone with SWCNT with 2.5% Nafion and 5% Nafion. (B) Accumulation time. 5 μM oxycodone measured with SWCNT 2.5% Nafion with accumulation times 0, 5, 10, and 15 min.

    Techniques Used: Concentration Assay

    Suggested electrochemical behavior of oxycodone and metabolites. 10 μM oxycodone (blue), 10 μM noroxycodone (green), and 10 μM oxymorphone (red) measured with (A) a plain SWCNT electrode with no accumulation time and (B) a Nafion/SWCNT electrode with 5 min accumulation time. Color bars highlight the oxidation peaks, tentatively assigned to two different functional groups, also indicated with corresponding colored circles in the chemical structures of oxycodone and the metabolites.
    Figure Legend Snippet: Suggested electrochemical behavior of oxycodone and metabolites. 10 μM oxycodone (blue), 10 μM noroxycodone (green), and 10 μM oxymorphone (red) measured with (A) a plain SWCNT electrode with no accumulation time and (B) a Nafion/SWCNT electrode with 5 min accumulation time. Color bars highlight the oxidation peaks, tentatively assigned to two different functional groups, also indicated with corresponding colored circles in the chemical structures of oxycodone and the metabolites.

    Techniques Used: Functional Assay

    Concentration series for oxycodone. (A) Oxycodone with concentrations 0.5, 1, 2.5, 5, 7.5, and 10 μM with an accumulation time of 5 min. (B) Average oxidation peak currents as a function of oxycodone concentration. Error bars show the standard deviations of the peak currents ( n = 4).
    Figure Legend Snippet: Concentration series for oxycodone. (A) Oxycodone with concentrations 0.5, 1, 2.5, 5, 7.5, and 10 μM with an accumulation time of 5 min. (B) Average oxidation peak currents as a function of oxycodone concentration. Error bars show the standard deviations of the peak currents ( n = 4).

    Techniques Used: Concentration Assay

    Stability of the sensor. (A) Electrode signal stability; 5 μM oxycodone measured with one SWCNT 2.5% Nafion 6 times in a row. (B) Long-term stability. Three electrodes measured in 5 μM oxycodone after storing for 1, 8, 15, and 22 days after coating. Data shows the differences in the average values in the oxycodone peak current relative to day 1 in percentages as a function of days after coating.
    Figure Legend Snippet: Stability of the sensor. (A) Electrode signal stability; 5 μM oxycodone measured with one SWCNT 2.5% Nafion 6 times in a row. (B) Long-term stability. Three electrodes measured in 5 μM oxycodone after storing for 1, 8, 15, and 22 days after coating. Data shows the differences in the average values in the oxycodone peak current relative to day 1 in percentages as a function of days after coating.

    Techniques Used:

    Oxycodone and metabolites without and with 2.5% Nafion; 5 μM oxycodone (blue), 3.75 μM noroxycodone (green), and 250 nM oxymorphone (red) without Nafion (A) and with Nafion (B); 5 μM oxycodone (blue) and 5 μM oxycodone in the presence of the two metabolites, 3.75 μM noroxycodone and 250 nM oxymorphone (black dash), without Nafion (C) and with Nafion (D).
    Figure Legend Snippet: Oxycodone and metabolites without and with 2.5% Nafion; 5 μM oxycodone (blue), 3.75 μM noroxycodone (green), and 250 nM oxymorphone (red) without Nafion (A) and with Nafion (B); 5 μM oxycodone (blue) and 5 μM oxycodone in the presence of the two metabolites, 3.75 μM noroxycodone and 250 nM oxymorphone (black dash), without Nafion (C) and with Nafion (D).

    Techniques Used:



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    Toronto Research Chemicals oxycodone hydrochloride powder
    Characterization of the Nafion/SWCNT electrode. (A) Nafion concentration. 5 μM <t>oxycodone</t> with SWCNT with 2.5% Nafion and 5% Nafion. (B) Accumulation time. 5 μM oxycodone measured with SWCNT 2.5% Nafion with accumulation times 0, 5, 10, and 15 min.
    Oxycodone Hydrochloride Powder, supplied by Toronto Research Chemicals, used in various techniques. Bioz Stars score: 91/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/oxycodone+hydrochloride+powder/pmc07735650-53-0-10?v=Toronto+Research+Chemicals
    Average 91 stars, based on 1 article reviews
    oxycodone hydrochloride powder - by Bioz Stars, 2026-07
    91/100 stars
      Buy from Supplier

    Image Search Results


    Characterization of the Nafion/SWCNT electrode. (A) Nafion concentration. 5 μM oxycodone with SWCNT with 2.5% Nafion and 5% Nafion. (B) Accumulation time. 5 μM oxycodone measured with SWCNT 2.5% Nafion with accumulation times 0, 5, 10, and 15 min.

    Journal: Analytical Chemistry

    Article Title: Electrochemical Detection of Oxycodone and Its Main Metabolites with Nafion-Coated Single-Walled Carbon Nanotube Electrodes

    doi: 10.1021/acs.analchem.0c00450

    Figure Lengend Snippet: Characterization of the Nafion/SWCNT electrode. (A) Nafion concentration. 5 μM oxycodone with SWCNT with 2.5% Nafion and 5% Nafion. (B) Accumulation time. 5 μM oxycodone measured with SWCNT 2.5% Nafion with accumulation times 0, 5, 10, and 15 min.

    Article Snippet: Oxycodone hydrochloride powder and noroxycodone hydrochloride powder were purchased from Toronto Research Chemicals, Canada.

    Techniques: Concentration Assay

    Suggested electrochemical behavior of oxycodone and metabolites. 10 μM oxycodone (blue), 10 μM noroxycodone (green), and 10 μM oxymorphone (red) measured with (A) a plain SWCNT electrode with no accumulation time and (B) a Nafion/SWCNT electrode with 5 min accumulation time. Color bars highlight the oxidation peaks, tentatively assigned to two different functional groups, also indicated with corresponding colored circles in the chemical structures of oxycodone and the metabolites.

    Journal: Analytical Chemistry

    Article Title: Electrochemical Detection of Oxycodone and Its Main Metabolites with Nafion-Coated Single-Walled Carbon Nanotube Electrodes

    doi: 10.1021/acs.analchem.0c00450

    Figure Lengend Snippet: Suggested electrochemical behavior of oxycodone and metabolites. 10 μM oxycodone (blue), 10 μM noroxycodone (green), and 10 μM oxymorphone (red) measured with (A) a plain SWCNT electrode with no accumulation time and (B) a Nafion/SWCNT electrode with 5 min accumulation time. Color bars highlight the oxidation peaks, tentatively assigned to two different functional groups, also indicated with corresponding colored circles in the chemical structures of oxycodone and the metabolites.

    Article Snippet: Oxycodone hydrochloride powder and noroxycodone hydrochloride powder were purchased from Toronto Research Chemicals, Canada.

    Techniques: Functional Assay

    Concentration series for oxycodone. (A) Oxycodone with concentrations 0.5, 1, 2.5, 5, 7.5, and 10 μM with an accumulation time of 5 min. (B) Average oxidation peak currents as a function of oxycodone concentration. Error bars show the standard deviations of the peak currents ( n = 4).

    Journal: Analytical Chemistry

    Article Title: Electrochemical Detection of Oxycodone and Its Main Metabolites with Nafion-Coated Single-Walled Carbon Nanotube Electrodes

    doi: 10.1021/acs.analchem.0c00450

    Figure Lengend Snippet: Concentration series for oxycodone. (A) Oxycodone with concentrations 0.5, 1, 2.5, 5, 7.5, and 10 μM with an accumulation time of 5 min. (B) Average oxidation peak currents as a function of oxycodone concentration. Error bars show the standard deviations of the peak currents ( n = 4).

    Article Snippet: Oxycodone hydrochloride powder and noroxycodone hydrochloride powder were purchased from Toronto Research Chemicals, Canada.

    Techniques: Concentration Assay

    Stability of the sensor. (A) Electrode signal stability; 5 μM oxycodone measured with one SWCNT 2.5% Nafion 6 times in a row. (B) Long-term stability. Three electrodes measured in 5 μM oxycodone after storing for 1, 8, 15, and 22 days after coating. Data shows the differences in the average values in the oxycodone peak current relative to day 1 in percentages as a function of days after coating.

    Journal: Analytical Chemistry

    Article Title: Electrochemical Detection of Oxycodone and Its Main Metabolites with Nafion-Coated Single-Walled Carbon Nanotube Electrodes

    doi: 10.1021/acs.analchem.0c00450

    Figure Lengend Snippet: Stability of the sensor. (A) Electrode signal stability; 5 μM oxycodone measured with one SWCNT 2.5% Nafion 6 times in a row. (B) Long-term stability. Three electrodes measured in 5 μM oxycodone after storing for 1, 8, 15, and 22 days after coating. Data shows the differences in the average values in the oxycodone peak current relative to day 1 in percentages as a function of days after coating.

    Article Snippet: Oxycodone hydrochloride powder and noroxycodone hydrochloride powder were purchased from Toronto Research Chemicals, Canada.

    Techniques:

    Oxycodone and metabolites without and with 2.5% Nafion; 5 μM oxycodone (blue), 3.75 μM noroxycodone (green), and 250 nM oxymorphone (red) without Nafion (A) and with Nafion (B); 5 μM oxycodone (blue) and 5 μM oxycodone in the presence of the two metabolites, 3.75 μM noroxycodone and 250 nM oxymorphone (black dash), without Nafion (C) and with Nafion (D).

    Journal: Analytical Chemistry

    Article Title: Electrochemical Detection of Oxycodone and Its Main Metabolites with Nafion-Coated Single-Walled Carbon Nanotube Electrodes

    doi: 10.1021/acs.analchem.0c00450

    Figure Lengend Snippet: Oxycodone and metabolites without and with 2.5% Nafion; 5 μM oxycodone (blue), 3.75 μM noroxycodone (green), and 250 nM oxymorphone (red) without Nafion (A) and with Nafion (B); 5 μM oxycodone (blue) and 5 μM oxycodone in the presence of the two metabolites, 3.75 μM noroxycodone and 250 nM oxymorphone (black dash), without Nafion (C) and with Nafion (D).

    Article Snippet: Oxycodone hydrochloride powder and noroxycodone hydrochloride powder were purchased from Toronto Research Chemicals, Canada.

    Techniques: