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Advanced Materials

IF: 27.39
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Electrical Dissipation Factor Measurements of Droplet Impact‐Derived Microgels with Different Topological Structures

Published:2 December 2024 DOI: 10.1002/adma.202413457
Lei Wang, Xuerong Ding, Yiheng Hu, Qiurui Li, Yibing Bian, Yefan Duan, Shujie Lu, Hongbin Han, Ning Gu, Jianfei Sun

Abstract

Topology, the study of properties that are invariant under continuous transformations, in which the number of pores (genus) is a profound concept that determines a number of properties that have been verified in many microscopic systems, but have not been studied in macroscopic materials. Microgels are widely used materials, and based on microfluidics, regular, stable, and reproducible microgels can be prepared, but studies from the perspective of topological principles have not been reported. In this paper, a system based on a boric acid ester rapid cross‐linking strategy that can rapidly capture topological changes during the transient process of droplet‐to‐ring transition is proposed. The electrical dissipation properties associated with different transient topologies during the process are also investigated, demonstrating that the change of topological structures in macroscopic materials also affected their electrical properties, laying the foundation for the design of modulated macroscopic micro structured materials based on topology theory.

Substances (7)

Materials
Procduct Name CAS Molecular Formula Supplier Price
Sodium hydroxide 1310-73-2 NaOH 1210 suppliers $14.00-$16472.00
Ethanol 64-17-5 C2H6O 806 suppliers $10.00-$17310.00
Bovine albumin 9048-46-8 N/A 498 suppliers $15.00-$17060.00
Sodium metasilicate 6834-92-0 Na2O3Si 458 suppliers $22.00-$382.00
Boric acid 11113-50-1 BH3O3 396 suppliers $157.00-$1090.00
Sodium sulfide nonahydrate 1313-84-4 H2Na2OS 302 suppliers $17.47-$4302.45
Ferrous chloride tetrahydrate 13478-10-9 Cl2FeH2O 295 suppliers $8.00-$14530.00

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