1] Key Laboratory for Organic Electronics & Information Displays and Institute of Advanced Materials, Nanjing University of Posts & Telecommunications, 9 Wenyuan Road, Nanjing 210023, China [2] Institute of Advanced Materials and Jiangsu-Singapore Joint Research Center for Organic/Bio- Electronics & Information Displays, Nanjing Tech University, 30 South Puzhu Road, Nanjing 211816, China [3].
1] Key Laboratory for Organic Electronics & Information Displays and Institute of Advanced Materials, Nanjing University of Posts & Telecommunications, 9 Wenyuan Road, Nanjing 210023, China [2].
Nat Commun. 2014 Apr 7;5:3601. doi: 10.1038/ncomms4601.
Smart luminescent materials that are responsive to external stimuli have received considerable interest. Here we report ionic iridium (III) complexes simultaneously exhibiting mechanochromic, vapochromic and electrochromic phosphorescence. These complexes share the same phosphorescent iridium (III) cation with a N-H moiety in the N^N ligand and contain different anions, including hexafluorophosphate, tetrafluoroborate, iodide, bromide and chloride. The anionic counterions cause a variation in the emission colours of the complexes from yellow to green by forming hydrogen bonds with the N-H proton. The electronic effect of the N-H moiety is sensitive towards mechanical grinding, solvent vapour and electric field, resulting in mechanochromic, vapochromic and electrochromic phosphorescence. On the basis of these findings, we construct a data-recording device and demonstrate data encryption and decryption via fluorescence lifetime imaging and time-gated luminescence imaging techniques. Our results suggest that rationally designed phosphorescent complexes may be promising candidates for advanced data recording and security protection.
对对外界刺激有响应的智能发光材料引起了相当大的兴趣。在这里,我们报告了同时表现出机械变色、蒸气变色和电致变色磷光的离子铱(III)配合物。这些配合物具有相同的磷光铱(III)阳离子,在 N^N 配体中具有 N-H 部分,并包含不同的阴离子,包括六氟磷酸盐、四氟硼酸盐、碘化物、溴化物和氯化物。阴离子抗衡离子通过与 N-H 质子形成氢键,使配合物的发射颜色从黄色变为绿色,从而产生变化。N-H 部分的电子效应对机械研磨、溶剂蒸气和电场敏感,导致机械变色、蒸气变色和电致变色磷光。基于这些发现,我们构建了一个数据记录设备,并通过荧光寿命成像和时间门控发光成像技术演示了数据加密和解密。我们的结果表明,合理设计的磷光配合物可能是先进的数据记录和安全保护的有前途的候选者。