electroanalytical chemistry
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2022 ◽  
Author(s):  
Shelley D. Minteer ◽  
Olja Simoska

2021 ◽  
Vol 12 ◽  
pp. 957-964
Author(s):  
Elena O Gordeeva ◽  
Ilya V Roslyakov ◽  
Alexey P Leontiev ◽  
Alexey A Klimenko ◽  
Kirill S Napolskii

Nanoelectrode arrays are much in demand in electroanalytical chemistry, electrocatalysis, and bioelectrochemistry. One of the promising approaches for the preparation of such systems is templated electrodeposition. In the present study, porous anodic alumina templates are used to prepare Au nanoelectrode arrays. Multistage electrodeposition is proposed for the formation of recessed electrodes with the ability to tune the distance between the surface of the porous template and the top surface of the nanoelectrodes. A set of complementary techniques, including chronoamperometry, coulometry, and scanning electron microscopy, are used to characterize the nanoelectrode arrays. The number of active nanoelectrodes is experimentally measured. The pathways to further improve the recessed nanoelectrode arrays based on anodic alumina templates are discussed.


2021 ◽  
pp. 751-824
Author(s):  
James W. Robinson ◽  
Eileen M. Skelly Frame ◽  
George M. Frame

Chemosensors ◽  
2021 ◽  
Vol 9 (5) ◽  
pp. 103
Author(s):  
Olesya A. Voronova ◽  
Elena I. Korotkova ◽  
Evgenii V. Plotnikov ◽  
Alina V. Geraskevich ◽  
Nadegda G. Kataeva ◽  
...  

One of the main directions in the development of modern electroanalytical chemistry is the development of new effective methods for research and analysis of biological objects, particularly, human blood serum. The creation of new electrochemical sensors is a promising approach, which has determined several main directions in applied voltammetry in the field of chemical analytical control. In this work, the dynamics and parameters of total antioxidant activity of human serum blood of patients with chronic cerebral ischemia, during treatment with pharmaceutical drugs Mexidol, Cavinton Comfort, and Cytoflavin was tested by cathode voltammetry with a model process of oxygen electroreduction, using a new electrochemical sensor.


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