Also published as: B Yan, C Yan, C. Yan, C.C. Yan, C.H. Yan, Chaokun Yan, Chunli Yan, D Yan, D.X. Yan, G.-Y. Yan, H Yan, Haiyan Yan, Han Yan, Hong Yan, J Yan, K. Yan, L Yan, M Yan, N Yan, PY Yan, Q Yan, Q. Yan, Qingzhu Yan, R. C. Yan, S Yan, S. Yan, WY Yan, Wei Yan, X Yan, X. Yan, XL Yan, Xiao-Fei Yan, Xiaomei Yan, XiaoāWei Yan, Y Yan, Yang Yan, Yuxin Yan, Z Yan, Z. Yan, Zhao, Yan
AbstractNew iridium tetrazolate complexes containing oā, mā, or pācarboranyl substitution in different positions of a phenylpyridine ligand have been prepared. The carborane isomers and the effect of Show more
AbstractNew iridium tetrazolate complexes containing oā, mā, or pācarboranyl substitution in different positions of a phenylpyridine ligand have been prepared. The carborane isomers and the effect of their substitution position in the tuning of optical properties have been examined. The neutral complexes with the carboranyl substituent on the phenyl ring in meta position relative to the metal exhibit redshifted emission bands in contrast to blueshifts for those with carboranyl in para position. All cationic complexes display evidently blueshifted dualāpeak emission compared with the carboraneāfree complex (cāTZ) with a broad singleāpeak emission. Introduction of carborane leads to a blueshift over 70 nm relative to cāTZ. Carboranes also significantly improve phosphorescence efficiency (ΦP) and lifetime (Ļ), that is, ΦP=0.64 versus 0.21 (cāTZ) and Ļ=880 ns versus 241 ns (cāTZ). The unique hydrophilic nidoācarboraneābased IrIII complex nidoāoā1 shows the largest phosphorescence efficiency (abs ΦP=0.57) among known waterāsoluble iridium complexes, long emission lifetime (Ļ=4.38 μs), as well as varying emission efficiency and lifetime with O2 content in aqueous solution. Therefore, nidoāoā1 has been used as an excellent oxygenāsensitive phosphor for intracellular O2 sensing and hypoxia imaging. Show less