Fabrication of a fast response non-enzymatic glucose sensor based on in-situ synthesized Cu-metal organic frameworks integrated with electrochemically reduced graphene quantum dots

سال انتشار: 1404
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 323

فایل این مقاله در 15 صفحه با فرمت PDF قابل دریافت می باشد

استخراج به نرم افزارهای پژوهشی:

لینک ثابت به این مقاله:

شناسه ملی سند علمی:

JR_NAMJ-12-1_003

تاریخ نمایه سازی: 6 آذر 1403

چکیده مقاله:

Objective(s): During this study, a novel and fast response platform based on in-situ synthesis of Cu-metal organic frameworks (Cu-MOFs) integrated with electrochemically reduced graphene quantum dots (ErGQDs) was developed through an electrochemical deposition method and a conversation process for non-enzymatic glucose determination.Materials and Methods: In the first step, metallic copper and ErGQDs were simultaneous electrochemically deposited on the surface of carbon ceramic electrode (CCE). Then, metallic copper was converted to copper oxide by cyclic voltammetry technique. Finally, by adding the benzene-۱, ۳, ۵-tricarboxylic acid (BTC), copper-based MOFs was formed on the surface of constructed electrode by an in-situ conversation process and the fabricated electrode (Cu-MOFs/ErGQDs/CCE) was used for the non-enzymatic electrochemical detection of glucose. The physicochemical characterization and electrocatalytic behavior of fabricated electrode toward glucose oxidation were studied through the suitable techniques.  Results: The electrochemical results demonstrated that the Cu-MOFs/ErGQDs/CCE is a suitable sensor for glucose determination which exhibits wide linear ranges (۲.۰-۵۰۰.۰ µM), low detection limit [۰.۵۹ µM (S/N=۳)], high sensitivity (۵۰۶۹ μA mM-۱cm-۲), stability (RSD%=۳.۰۲), reproducibility  (RSD%= ۲.۰۹) and good selectivity. Conclusion: Overall, this study highlights the development of Cu-MOFs/ErGQDs/CCE as a sensor with promising characteristics for non-enzymatic determination of glucose. So that, the present sensor was used for detection of glucose in human blood serum and saliva samples.

کلیدواژه ها:

نویسندگان

Samaneh Makani

Electrochemistry Research Laboratory, Faculty of Basic Sciences, Azarbaijan Shahid Madani University, Tabriz, Iran

Biuck Habibi

Electrochemistry Research Laboratory, Faculty of Basic Sciences, Azarbaijan Shahid Madani University, Tabriz, Iran

Rahim Mohammad-Rezaei

Electrochemistry Research Laboratory, Faculty of Basic Sciences, Azarbaijan Shahid Madani University, Tabriz, Iran

مراجع و منابع این مقاله:

لیست زیر مراجع و منابع استفاده شده در این مقاله را نمایش می دهد. این مراجع به صورت کاملا ماشینی و بر اساس هوش مصنوعی استخراج شده اند و لذا ممکن است دارای اشکالاتی باشند که به مرور زمان دقت استخراج این محتوا افزایش می یابد. مراجعی که مقالات مربوط به آنها در سیویلیکا نمایه شده و پیدا شده اند، به خود مقاله لینک شده اند :
  • Hu Z, Zhao D. Metal-organic frameworks with Lewis acidity: synthesis, ...
  • Xu Y, Li Q, Xue H, Pang H. Metal-organic frameworks ...
  • Yoo Y, Jeong HK. Rapid fabrication of metal organic framework ...
  • Rodenas T, Luz I, Prieto G, Seoane B, Miro H, ...
  • Falcaro P, Hill AJ, Nairn KM, Jasieniak J, Mardel JI, ...
  • Makiura R, Motoyama S, Umemura Y, Yamanaka H, Sakata O, ...
  • Li M, Dincă M. Reductive Electrosynthesis of Crystalline Metal-Organic Frameworks. ...
  • Qi Y, Lin S, Chen C, Liu Y, Qiao Z, ...
  • Chen YC, Chiang WH, Kurniawan D, Yeh PC, Otake KI, ...
  • Habibi B, Pashazadeh A, Pashazadeh S, Saghatforoush LA. Electrocatalytic oxidation ...
  • Rahmani K, Habibi B. Electrofabrication of the Ternary NiCuFe Alloy ...
  • Altegani S, Naser E, Badmus KO, Khotseng L. Synthesis, Properties, ...
  • Habibi B, Pashazadeh S. Fabrication, characterization and performance evaluation of ...
  • Habibi B, Pashazadeh S, Pashazadeh A, Saghatforoush, LA. An amplified ...
  • Habibi B, Pashazadeh A, Saghatforoush LA. Zn-mesoporous metal-organic framework incorporated ...
  • Bacon M, Bradley SJ, Nann T. Graphene Quantum Dots. Part ...
  • Sheikh Mohd Ghazali SAI, Is F, Zamil ZN, Zulkifli NN, ...
  • Li M, Liu C, Qi L, Liu H. Nitrogen-Doped Graphene ...
  • Ahirwar S, Mallick S, Bahadur D. Electrochemical Method To Prepare ...
  • Kaur A, Kaur A, Pandey K, Kaur R, Vashishat N ...
  • Chen YC, Chiang WH, Kurniawan D, Yeh PC, Otake KI, ...
  • Deshpande AD, Harris-Hayes M, Schootman M. Epidemiology of diabetes and ...
  • Steiner MS, Duerkop A, Wolfbeis OS. Optical methods for sensing ...
  • Chen C, Xie Q, Yang D, Xiao H, Fu Y, ...
  • Li J, Hu H, Li H, Yao C. Recent developments ...
  • Hassan MH, Vyas C, Grieve B, Bartolo P. Recent advances ...
  • Wang G, He X, Wang L, Gu A, Huang Y, ...
  • Habibi B, Haghighi SY. Electrosynthesized Reduced Graphene Oxide-Supported Platinum, Platinum-Copper ...
  • Dong Y, Shao J, Chen C, Li H, Wang R, ...
  • Alizadeh T, shokri M. A new humidity sensor based upon ...
  • Mohammad Rezaei R, Abbas Zadeh J, Golmohammadpour M, Hosseinzadeh E. ...
  • Zeng Y, Camarada ME, Lu X, Tang K, Li W, ...
  • Caddeo F, Vogt R, Weil D, Sigle W, Toimil Molares ...
  • Giri SD, Sarkar A. Electrochemical Study of Bulk and Monolayer ...
  • Habibi B, Delnavaz N. Electrooxidation of glycerol on nickel and ...
  • Muthurasu A, Dhandapani P, Ganesh V. Facile and simultaneous synthesis ...
  • Liu S, Sun L, Xu F, Zhang J, Jiao C, ...
  • Lee DY, Shinde DV, Yoon SJ, Cho KN, Lee W, ...
  • Gascon J, Aguado S, Kapteijn F. Manufacture of dense coatings ...
  • Moradi Golsheikh A, Yeap GY, Yam FK, San Lim H. ...
  • Chen S, Wang C, Zhang M, Zhang W, Qi J, ...
  • Arul P, John SA. Electrodeposition of CuO from Cu-MOF on ...
  • Lukaszewski M, Soszko M, Czerwiński A. Electrochemical methods of real ...
  • Habibi B, Pashazadeh S, Saghatforoush LA, Pashazadeh A. Direct electrochemical ...
  • Iftikhar T, Xu Y, Aziz A, Ashraf G, Li G, ...
  • Wanga F, Chen X, Chen L, Yang J, Wang Q. ...
  • Handa Y, Watanabe K, Chihara K, Katsuno E, Horiba T, ...
  • Zhang Y, Xu J, Xia J, Zhang F, Wang Z. ...
  • Salimi A, Roushani M. Non-enzymatic glucose detection free of ascorbic ...
  • Liu B, Wang X, Liu H, Zhai Y, Li L, ...
  • Chen X, Liu D, Cao G, Tang Y, Wu C. ...
  • Wu L, Lu Z, Ye J. Enzyme-free glucose sensor based ...
  • Bard AJ, Faulkner LR. Electrochemical Methods: Fundamentals and Applications. ۲nd ...
  • Khosroshahi Z, Karimzadeh F, Kharazia M, Allafchian A. A non-enzymatic ...
  • Wei C, Li X, Xiang W, Yu Z, Liu Q. ...
  • Zhang J, Chen L, Yang K. In situ synthesis of ...
  • Wei C, Li X, Xiang W, Yu Z, Liu Q. ...
  • Nie H, Yao Z, Zhou X, Yang Z, Huang S. ...
  • Fang L, Zhu Q, Cai Y, Liang B, Ye X. ...
  • Shahrokhian S, Ezzati M, Hosseini H. Fabrication of a sensitive ...
  • Zhang L, Wang N, Cao P, Lin M, Xu L, ...
  • Sun S, Tang Y, Wu C, Wan C. Phytic acid ...
  • Chiu WT, Chang TFM, Sone M, Tixier-Mita A, Toshiyoshi H. ...
  • Geng D, Bo X, Guo L. Ni-doped molybdenum disulfide nanoparticles ...
  • Hussein BA, Tsegaye AA, Shifera G, Taddesse AM. A sensitive ...
  • نمایش کامل مراجع