期刊
BIOSENSORS-BASEL
卷 12, 期 5, 页码 -出版社
MDPI
DOI: 10.3390/bios12050308
关键词
3D printing materials; mechanical stability; chemical stability; electrochemistry; cyclic voltammetry; differential pulse voltammetry; anodic stripping voltammetry
资金
- project of the Czech Science Foundation (GA CR) [20-01589S]
- Specific University Research [SVV260560]
- Grant Agency of the Charles University [373521]
This manuscript investigates the chemical and structural stability of 3D printing materials commonly used in electrochemistry, providing comprehensive information for the use of these materials in electrochemical platform manufacturing through the study of their properties changes after exposure to solvents and electrolytes.
This manuscript investigates the chemical and structural stability of 3D printing materials (3DPMs) frequently used in electrochemistry. Four 3D printing materials were studied: Clear photopolymer, Elastic photopolymer, PET filament, and PLA filament. Their stability, solubility, structural changes, flexibility, hardness, and color changes were investigated after exposure to selected organic solvents and supporting electrolytes. Furthermore, the available potential windows and behavior of redox probes in selected supporting electrolytes were investigated before and after the exposure of the 3D-printed objects to the electrolytes at various working electrodes. Possible electrochemically active interferences with an origin from the 3DPMs were also monitored to provide a comprehensive outline for the use of 3DPMs in electrochemical platform manufacturing.
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