109745-44-0Relevant academic research and scientific papers
Chemical Modification toward Long Spin Lifetimes in Organic Conjugated Radicals
Dai, Ya-Zhong,Dong, Bo-Wei,Kao, Yi,Wang, Zi-Yuan,Un, Hio-Ieng,Liu, Zheng,Lin, Zhi-Jun,Li, Liang,Xie, Fang-Bai,Lu, Yang,Xu, Mei-Xing,Lei, Ting,Sun, Yu-Jie,Wang, Jie-Yu,Gao, Song,Jiang, Shang-Da,Pei, Jian
, p. 2972 - 2977 (2018/09/25)
Organic semiconductors for spin-based devices require long spin relaxation times. Understanding their spin relaxation mechanisms is critical to organic spintronic devices and applications for quantum information processing. However, reports on the spin re
Inert Carbon Free Radicals. 8. Polychlorotriphenylmethyl Radicals. Synthesis, Structure, and Spin-Density Distribution
Armet, O.,Veciana, J.,Rovira, C.,Riera, J,Castaner, J.,et al.
, p. 5608 - 5616 (2007/10/02)
Some symmetrical Ar3C. and unsymmetrical (C6Cl5)3-xArxC. radicals with different chlorine substitution patterns (X = 1,2; Ar: 2H-C6HCl4, 3H,5H-C6H2Cl4, 4H-C6HCl4, C6H5) are prepared.X-ray crystal structures for
