|
[1]
|
Zhang, S., Zhang, R., Ma, B., Qiu, J., Li, J., Sang, Y., Liu, W. and Liu, H. (2016) Specific Detection of Potassium Ion in Serum by a Modified G-Quadruplex Method. RSC Advances, 6, 41999-42007. [Google Scholar] [CrossRef]
|
|
[2]
|
Chen, Z., Tan, L., Hu, L. and Luan, Y. (2015) Superior Fluorescent Probe for Detection of Potassium Ion. Talanta, 144, 247-251. [Google Scholar] [CrossRef] [PubMed]
|
|
[3]
|
Zhen, S.J., Yu, Y., Li, C.M. and Huang, C.Z. (2015) Graphene Oxide Amplified Fluorescence Anisotropy for Label-Free Detection of Potassium Ion. The Analyst, 140, 353-357. [Google Scholar] [CrossRef]
|
|
[4]
|
Miao, J., Cao, Z., Zhou, Y., Lau, C. and Lu, J. (2008) Instantaneous Derivatization Technology for Simultaneous and Homogeneous Determination of Multiple DNA Targets. Analytical Chemistry, 80, 1606-1613. [Google Scholar] [CrossRef] [PubMed]
|
|
[5]
|
Yang, L., Qing, Z., Liu, C., Tang, Q., Li, J., Yang, S., Zheng, J., Yang, R. and Tan, W. (2016) Direct Fluorescent Detection of Blood Potassium by Ion-Selective Formation of Intermolecular G-Quadruplex and Ligand Binding. Analytical Chemistry, 88, 9285-9292. [Google Scholar] [CrossRef] [PubMed]
|
|
[6]
|
Zhang, L., Chen, S., Zhao, Q. and Huang, H. (2015) Carbon Dots as a Fluorescent Probe for Label-Free Detection of Physiological Potassium Level in Human Serum and Red Blood Cells. Analytica Chimica Acta, 880, 130-135. [Google Scholar] [CrossRef] [PubMed]
|
|
[7]
|
Li, Y., Huszthy, P. and Kunsági-Máté, S. (2012) Effect of Molecular Vibrations on the Selectivity Character of Pyridino-18-Crown-6 Derivatives towards Potassium Ion. Chemical Physics Letters, 533, 45-49. [Google Scholar] [CrossRef]
|
|
[8]
|
Dong, J., Zhao, H., Zhou, F. and Li, B. (2016) Rapid and Sensi-tive Detection of Potassium Ion Based on K(+)-Induced G-Quadruplex and Guanine Chemiluminescence. Analytical and Bioanalytical Chemistry, 408, 1863-1869. [Google Scholar] [CrossRef] [PubMed]
|
|
[9]
|
Kai, M., Kishida, S. and Sakai, K. (1999) A Chemiluminescence Derivatization Method for Detecting Nucleic Acids and DNA Probes Using a Trimethoxyphenylglyoxal Reagent That Recognizes Guanine. Analytica Chimica Acta, 381, 155-163. [Google Scholar] [CrossRef]
|
|
[10]
|
Wei, W., Xu, C., Ren, J., Xu, B. and Qu, X. (2012) Sensing Metal Ions with Ion Selectivity of a Crown Ether and Fluorescence Resonance Energy Transfer between Carbon Dots and Graphene. ChemCommun (Camb), 48, 1284-1286. [Google Scholar] [CrossRef]
|
|
[11]
|
Qu, K., Wang, J., Ren, J. and Qu, X. (2013) Carbon Dots Prepared by Hydrothermal Treatment of Dopamine as an Effective Fluorescent Sensing Platform for the Label-Free Detection of Iron (III) Ions and Dopamine. Chemistry, 19, 7243-7249. [Google Scholar] [CrossRef] [PubMed]
|
|
[12]
|
Jarczewska, M., Górski, Ł. and Malinowska, E. (2016) Application of DNA Aptamers as Sensing Layers for Electrochemical Detection of Potassium Ions. Sensors and Actuators B: Chemical, 226, 37-43. [Google Scholar] [CrossRef]
|
|
[13]
|
Miao, P., Tang, Y., Wang, B., Han, K., Chen, X. and Sun, H. (2014) An Aptasensor for Detection of Potassium Ions Based on RecJ(f) Exonuclease Mediated Signal Amplification. The Analyst, 139, 5695-5699. [Google Scholar] [CrossRef]
|
|
[14]
|
Zhang, H.X., Huang, Z.X., Zhao, P.Y., Hou, Y., Guo, J.J. and Wu, Y.C. (2019) Crown Ether Functionalized Graphene Oxide as Ultrasensitive Electrochemical Sensor for Detection of Potassium Ions. Materials Research Express, 6, Article ID: 125095.
|
|
[15]
|
Naderi, M., Hosseini, M. and Ganjali, M.R. (2018) Naked-Eye Detection of Potassium Ions in a Novel Gold Nanoparticle Aggregation-Based Aptasensor. Spec-trochimicaacta. Part A, Molecular and Biomolecular Spectroscopy, 195, 75-83. [Google Scholar] [CrossRef] [PubMed]
|
|
[16]
|
Qiu, J., Zhang, Y., Dong, C., Huang, Y., Sun, L., Ruan, H., Wang, H., Li, X. and Wu, A. (2019) Rapid Colorimetric Detection of Potassium Ions Based on Crown Ether Modified Au NPs Sensor. Sensors and Actuators B: Chemical, 281, 783-788. [Google Scholar] [CrossRef]
|
|
[17]
|
Shen, G., et al. (2019) Direct Detection of Potassium and Lead (II) Ions Based on Assembly-Disassembly of a Chiral Cyanine Dye/TBA Complex. Talanta, 201, 490-495. [Google Scholar] [CrossRef] [PubMed]
|
|
[18]
|
Su, H., Ruan, W., Ye, S., Liu, Y., Sui, H., Li, Z., Sun, X., He, C. and Zhao, B. (2016) Detection of Physiological Potassium Ions Level in Human Serum by Raman Scattering Spectroscopy. Talanta, 161, 743-747. [Google Scholar] [CrossRef] [PubMed]
|