Growing developments in polymer science have led to further improvements in electroanalytical methods such as sensitivity, selectivity, reproducibility, and accuracy. The real advantage in electroanalytical field is the possibility to manufacture and customize plenty of different sensing platforms, thus avoiding expensive equipment, hiring skilled personnel, and expending economic effort. Polymeric Materials for Printed-Based Electroanalytical (BioApplicationsĭirectory of Open Access Journals (Sweden)įull Text Available Advances in design of selective interfaces and printed technology have mighty contributed to the expansion of the electroanalysis fame. Results showed that the appropriate range of 3D printing operation parameters: print height/nozzle diameter is between 0.4 to 0.6, the printing speed 4-8 cm/s with pumpage 9 * 10-2 m 3/ h. The applicability of 3D printing equipment and cement based materials is analyzed, and the influence of 3D printing operation parameters on the printing effect is explored in this paper. Lin, Jia Chao Wang, Jun Wu, Xiong Yang, Wen Zhao, Ri Xu Bao, MingģD printing is a new study direction of building method in recent years. Effect of Processing Parameters on 3D Printing of Cement - based Materials
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