Synergetic signal amplification of multi-walled carbon nanotubes-Cetyltrimethylammonium Bromide and Poly-L-Arginine as a highly sensitive detection platform for Rutin

Publish Year: 1397
نوع سند: مقاله ژورنالی
زبان: English
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شناسه ملی سند علمی:

JR_IJND-9-3_010

تاریخ نمایه سازی: 22 خرداد 1401

Abstract:

In this research, a glassy carbon electrode was coated with a thin layer of multi-walled carbon nanotubes in the presence of the surfactant and subsequently was electro-polymerized with Poly-L-arginine (P-L-Arg). The prepared electrode was used as an effective sensor for the quantitative detection of Rutin (Ru). The fabricated electrode exhibited good electrochemical performance with low electron transfer resistance. The electrochemical behavior of Ru at the prepared electrode was also investigated by cyclic voltammetry and differential pulse voltammetry techniques. For modified glassy carbon electrode, the transfer coefficient (α), the number of electrons involved in the rate-determining step (nα) and electron transfer rate constant (ks) calculated. Under the favorable conditions, a linear relationship between the oxidation peak current and concentration of Ru was obtained in the range from ۰.۱ µM to ۱۰ µM with a detection limit of ۰.۰۴۸ µM and with the extraordinary high sensitivity value of ۶.۳۷۶۷, µA/µM was obtained. Interference and stability studies showed that satisfactory detection results are achieved using this electrode. The proposed electrode was successfully applied for the determination of Ru in human blood serum samples.

Authors

Ghasem Karim-Nezhad

Department of Chemistry, Payame Noor University, Tehran, Iran

Zeynab Khorablou

Department of Chemistry, Payame Noor University, Tehran, Iran

Parisa Seyed Dorraji

Department of Chemistry, Payame Noor University, Tehran, Iran

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  • Korkmaz A., Kolankaya D., (۲۰۱۰), Protective effect of Rutin on ...
  • Domitrović R., Jakovac H., Marchesi V. V., Vladimir-Knežević S., Cvijanović ...
  • Khan M. M., Ahmad A., Ishrat T., Khuwaja G., Srivastawa ...
  • Zoulis N. E., Efstathiou C. E., (۱۹۹۶), Preconcentration at a ...
  • Kato R., Nakadate T., Yamamoto S., Sugimura T., (۱۹۸۳), Inhibition ...
  • Erlund I., Kosonen T., Alfthan G., Mäenpää J., Perttunen K., ...
  • Kuntić V., Pejić N., Ivković B., Vujić Z., Ilić K., ...
  • He J., Feng Y., Ouyang H.-z., Yu B., Chang Y.-x., ...
  • Zeng, H.-j., Yang R., Guo C., Wang Q.-w., Qu L.-b., ...
  • Zhang W., Xu M., Yu C., Zhang G., Tang X., ...
  • Gao F., Qi X., Cai X., Wang Q., Gao F., ...
  • Sun W., Wang Y., Gong S., Cheng Y., Shi F., ...
  • Zhang Y., Zheng J., (۲۰۰۸), Sensitive voltammetric determination of Rutin ...
  • Zhan T., Sun X., Wang X., Sun W., Hou W., ...
  • Franzoi A. C., Spinelli A., Vieira I. C., (۲۰۰۸), Rutin ...
  • Sun W., Yang M., Li Y., Jiang Q., Liu S., ...
  • Tyszczuk K., (۲۰۰۹), Sensitive voltammetric determination of Rutin at an ...
  • Zeng B., Wei S., Xiao F., Zhao F., (۲۰۰۶), Voltammetric ...
  • Sun W., Wang X., Zhu H., Sun X., Shi F., ...
  • Deng P., Xu Z., Feng Y., (۲۰۱۲), Highly sensitive and ...
  • Wei S., Dan W., Zhang Y.-Y., Xiao-Mei J., Hai-Xu Y., ...
  • He J.-L., Yang Y., Yang X., Liu Y.-L., Liu Z.-H., ...
  • Rahimi N., Sabbaghi S., Sheikhi M. H., (۲۰۱۲), Hydrogen storage ...
  • Zarei H., Zeinali M., Ghourchian H., Eskandari Kh., (۲۰۱۳), Gold ...
  • Garmaroudi F. S., Vahdati R. A. R., (۲۰۰۸), Functionalized CNTs ...
  • Dorraji P. S, Jalali F., (۲۰۱۵), Sensitive amperometric determination of ...
  • Ohnuki Y., Matsuda H., Ohsaka T., Oyama N., (۱۹۸۳), Permselectivity ...
  • Volkov A., Tourillon G., Lacaze P.-C., Dubois J.-E., (۱۹۸۰), Electrochemical ...
  • Sandler J., Shaffer M., Prasse T., Bauhofer W., Schulte K., ...
  • Wang Z., Yuan J., Li M., Han D., Zhang Y., ...
  • Wang J., Musameh M., (۲۰۰۵), Carbon-nanotubes doped polypyrrole glucose biosensor. ...
  • Tsai Y.-C., Li S.-C., Liao S.-W., (۲۰۰۶), Electrodeposition of polypyrrole–multiwalled ...
  • San S. E., Yerli Y., Okutan M., Yılmaz F., Gunaydın ...
  • Woo H., Czerw R., Webster S., Carroll D., Park J., ...
  • Tahermansouri H., Chobfrosh Khoei D., Meskinfam M., (۲۰۱۰) Functionalization of ...
  • Coleman J., Curran S., Dalton A., Davey A., Mc Carthy ...
  • Karim-Nezhad G., Khorablou Z., Dorraji P. S., (۲۰۱۶), Modification of ...
  • Kor K., Zarei K., (۲۰۱۴), Electrochemical determination of chloramphenicol on ...
  • Yang S., Li G., Zhao J., Zhu H., Qu L., ...
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