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Electrochemical behavior of some organic molecules at tailored nanostructured modified electrodes
Glucose and ascorbic acid (AA) electrooxidation are examined at nickel nanoparticles (nano-Ni) and cobalt nanoparticles (nano-Co) modified binary catalyst, fabricated in a certain order onto glassy carbon (GC) electrode. Either nano-Ni was deposited at first then followed by nano-Co or the reverse. Characterization of the modified electrodes were achieved morphologically and voltammetrically. The electrochemical response of the nano-Co modified electrodes critically depends on the modification of the underlying substrate. Deposition of nano-Co on a pre-deposited nickel subjected to electrooxidation, designated as nano-Co/NiOx/GC, resulted in a significant catalysis of glucose oxidation. The nano-Co/NiOx/GC electrode is utilized for the simultaneous analysis of glucose and ascorbic acid using square wave voltammetry (SWV). The linear dynamic ranges for the two species were determined. The limit of detection (LOD) and limit of quantification (LOQ) values were calculated and founded 0.176 and 0.528 μM for AA and 0.066 and 0.199 μM for glucose. Also, the precision of the developed method was evaluated by determining the relative standard deviation (RSD) and found less than 2.3%.
العنوان: | Electrochemical behavior of some organic molecules at tailored nanostructured modified electrodes |
عناوين أخرى: | السلوك الكهروكيميائي لبعض المواد العضوية على أقطاب معدلة بجسيمات متناهية الصغر |
المؤلفون: | Awad, Mohamed Ismail Ekhwan, Muhamed Mulla B |
الموضوعات :: | Binary electrocatalyst Ascorbic acid |
تاريخ النشر :: | 2020 |
الناشر :: | جامعة أم القرى |
الملخص: | Glucose and ascorbic acid (AA) electrooxidation are examined at nickel nanoparticles (nano-Ni) and cobalt nanoparticles (nano-Co) modified binary catalyst, fabricated in a certain order onto glassy carbon (GC) electrode. Either nano-Ni was deposited at first then followed by nano-Co or the reverse. Characterization of the modified electrodes were achieved morphologically and voltammetrically. The electrochemical response of the nano-Co modified electrodes critically depends on the modification of the underlying substrate. Deposition of nano-Co on a pre-deposited nickel subjected to electrooxidation, designated as nano-Co/NiOx/GC, resulted in a significant catalysis of glucose oxidation. The nano-Co/NiOx/GC electrode is utilized for the simultaneous analysis of glucose and ascorbic acid using square wave voltammetry (SWV). The linear dynamic ranges for the two species were determined. The limit of detection (LOD) and limit of quantification (LOQ) values were calculated and founded 0.176 and 0.528 μM for AA and 0.066 and 0.199 μM for glucose. Also, the precision of the developed method was evaluated by determining the relative standard deviation (RSD) and found less than 2.3%. |
الوصف :: | 118 paper |
الرابط: | https://dorar.uqu.edu.sa/uquui/handle/20.500.12248/117205 |
يظهر في المجموعات : | الرسائل العلمية المحدثة |
ملف | الوصف | الحجم | التنسيق | |
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23845.pdf " الوصول المحدود" | الرسالة الكاملة | 6.22 MB | Adobe PDF | عرض/ فتحطلب نسخة |
absa23845.pdf " الوصول المحدود" | ملخص الرسالة بالعربي | 132.96 kB | Adobe PDF | عرض/ فتحطلب نسخة |
abse23845.pdf " الوصول المحدود" | ملخص الرسالة بالإنجليزي | 111.43 kB | Adobe PDF | عرض/ فتحطلب نسخة |
indu23845.pdf " الوصول المحدود" | المقدمة | 623.7 kB | Adobe PDF | عرض/ فتحطلب نسخة |
cont23845.pdf " الوصول المحدود" | فهرس الموضوعات | 110.76 kB | Adobe PDF | عرض/ فتحطلب نسخة |
title23845.pdf " الوصول المحدود" | غلاف | 116.76 kB | Adobe PDF | عرض/ فتحطلب نسخة |
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