| Literature DB >> 33982370 |
Chao-Ran Huang1, Yibao Li1, Yongfa Xie2, Ye Du2, Hang Peng2, Yu-Ling Zeng2, Jun-Chao Liu2, Ren-Gen Xiong2.
Abstract
Organic radical ferroics such as TEMPO have attracted widespread interest. However, the relatively low Curie temperature of 287 K and melting point of 311 K severely hinder its application potential. Despite extensive interest, high-temperature radical ferroics have not yet been found. Here, taking advantage of chemical design and supramolecular radical chemistry, we designed two high-temperature organic supramolecular radical ferroics [(NH3 -TEMPO)([18]crown-6)](ReO4 ) (1) and [(NH3 -TEMPO)([18]crown-6)](ClO4 ) (2), which can retain ferroelectricity up to 413 K and 450 K, respectively. To our knowledge, they are both the first supramolecular radical ferroics and unprecedented high-temperature radical ferroics, where the supramolecular component is vital for the stabilization of the radical and extending the working temperature window. Both also have paramagnetism, non-interacting spin moments, and excellent piezoelectric and electrostrictive behaviors comparable to that of LiNbO3 .Entities:
Keywords: TEMPO; ferroics; piezoelectricity; radical; supramolecular chemistry
Year: 2021 PMID: 33982370 DOI: 10.1002/anie.202105744
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336