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Platinum single atom on CsPbBr3 nanocrystals as electrocatalyst boosts electrochemical sensing of ascorbic acid.
Qin, Yuanlong; Chen, Hanzhang; Luo, Yu; Zhang, Jiayue; Zhou, Kejia; Leng, Yumin; Zheng, Jia; Chen, Zhengbo.
Affiliation
  • Qin Y; Department of Chemistry, Capital Normal University, Beijing, 100048, China.
  • Chen H; Department of Chemistry, Capital Normal University, Beijing, 100048, China.
  • Luo Y; Beijing Sunwise Information Technology Ltd. Beijing, 100086, China.
  • Zhang J; Department of Chemistry, Capital Normal University, Beijing, 100048, China.
  • Zhou K; Department of Chemistry, Capital Normal University, Beijing, 100048, China.
  • Leng Y; School of Mathematics and Physics, Anqing Normal University, Anqing, 246133, China. Electronic address: yumin_leng@126.com.
  • Zheng J; Department of Chemistry, Capital Normal University, Beijing, 100048, China.
  • Chen Z; Department of Chemistry, Capital Normal University, Beijing, 100048, China. Electronic address: czb979216@sina.com.
Talanta ; 277: 126396, 2024 Sep 01.
Article in En | MEDLINE | ID: mdl-38897004
ABSTRACT
Monitoring ascorbic acid (AA) levels in human body can provide valuable clues for disease diagnosis. Anchoring noble metal single atoms on perovskite substrate is a promising strategy to design electrocatalysts with outstanding electrocatalytic performance. Herein, we design an electrochemical method for detecting AA by utilizing Pt single atoms-doped CsPbBr3 nanocrystals (Pt SA/CsPbBr3 NCs) fixed on a glassy carbon electrode as an electrochemical catalyst. The uncharged 3,5,3',5'-tetramethylbenzidine (TMB) undergoes oxidation to form the positively charged oxidized TMB (oxTMB) owing to the exceptional electrochemical catalytic performance of Pt SA/CsPbBr3 NCs. Subsequently, the target AA reduces oxTMB to TMB, which is then electrocatalytically oxidized to oxTMB, producing significant oxidation current. In this way, such characteristic provides a sensitive electrochemical strategy for AA detection, achieving a concentration range of 50-fold with the detection limit of 0.0369 µM. The developed electrochemical method also successfully generates accurate detection response of AA in complex sample media (urine). Overall, this approach is expected to offer a novel way for early disease diagnosis.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Platinum / Ascorbic Acid / Nanoparticles / Electrochemical Techniques Limits: Humans Language: En Journal: Talanta Year: 2024 Document type: Article Affiliation country: China

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Platinum / Ascorbic Acid / Nanoparticles / Electrochemical Techniques Limits: Humans Language: En Journal: Talanta Year: 2024 Document type: Article Affiliation country: China