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Novel "on-off" fluorescence sensing for rapid and accurate determination of Cr3+ based on g-CNQDs.
Xu, Xiaohua; Li, Huye; Sun, Yapeng; Ma, Tianfeng; Shi, Lin; Mu, Wencheng; Wang, Huan; Lu, Yongchang.
Afiliação
  • Xu X; Modern Tibetan Medicine Creation Engineering Technology Research Center of Qinghai Province, College of Pharmacy, Qinghai Nationalities University Xining 810007 China qhmuwh1028@126.com qhlych@126.com.
  • Li H; The Fourth People's Hospital of Qinghai Province Xining 810007 China.
  • Sun Y; No. 2 Middle School in Xining City Xining 810007 Qinghai Province China.
  • Ma T; Modern Tibetan Medicine Creation Engineering Technology Research Center of Qinghai Province, College of Pharmacy, Qinghai Nationalities University Xining 810007 China qhmuwh1028@126.com qhlych@126.com.
  • Shi L; Modern Tibetan Medicine Creation Engineering Technology Research Center of Qinghai Province, College of Pharmacy, Qinghai Nationalities University Xining 810007 China qhmuwh1028@126.com qhlych@126.com.
  • Mu W; Modern Tibetan Medicine Creation Engineering Technology Research Center of Qinghai Province, College of Pharmacy, Qinghai Nationalities University Xining 810007 China qhmuwh1028@126.com qhlych@126.com.
  • Wang H; Modern Tibetan Medicine Creation Engineering Technology Research Center of Qinghai Province, College of Pharmacy, Qinghai Nationalities University Xining 810007 China qhmuwh1028@126.com qhlych@126.com.
  • Lu Y; Modern Tibetan Medicine Creation Engineering Technology Research Center of Qinghai Province, College of Pharmacy, Qinghai Nationalities University Xining 810007 China qhmuwh1028@126.com qhlych@126.com.
RSC Adv ; 13(41): 28550-28559, 2023 Sep 26.
Article em En | MEDLINE | ID: mdl-37780737
ABSTRACT
Cr3+ is one of the most essential trace elements in living organisms and plays a vital role in human metabolism. However, both deficiency and excess intake of Cr3+ can be harmful to the human body. Therefore, the quantitative determination of Cr3+ is of great significance in the field of life science. Based on this, in this study, a g-CNQDs@p-acetaminophenol fluorescence sensing system was developed for the quantitative detection of Cr3+ in actual complex samples. G-CNQDs were synthesized with sodium citrate and urea as precursors. The fluorescence signal was enhanced by the synergistic effect between p-acetaminophenol (APAP) and g-CNQDs. The fluorescence quenching phenomenon can be produced when Cr3+ is introduced into the fluorescence-enhanced g-CNQDs@p-acetaminophenol system. An "on-off" fluorescence sensing system was constructed based on g-CNQDs@p-acetaminophenol for the quantitative detection of Cr3+. The experimental data showed a wide linear region in the concentration range of 0.64-63.0 µM, and the detection limit was as low as 0.23 µM. The construction of the sensor system broadens the research field for the practical application of Cr3+.

Texto completo: 1 Base de dados: MEDLINE Idioma: En Revista: RSC Adv Ano de publicação: 2023 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Revista: RSC Adv Ano de publicação: 2023 Tipo de documento: Article