TY - JOUR
T1 - Tetraphenylethylene-Based Multicomponent Emissive Metallacages as Solid-State Fluorescent Materials
AU - Mu, Chaoqun
AU - Zhang, Zeyuan
AU - Hou, Yali
AU - Liu, Haifei
AU - Ma, Lingzhi
AU - Li, Xiaopeng
AU - Ling, Sanliang
AU - He, Gang
AU - Zhang, Mingming
N1 - Publisher Copyright:
© 2021 Wiley-VCH GmbH
PY - 2021/5/25
Y1 - 2021/5/25
N2 - The construction of solid-state fluorescent materials with high quantum yield and good processability is of vital importance in the preparation of organic light-emitting devices. Herein, a series of tetraphenylethylene (TPE)-based multicomponent emissive metallacages are prepared by the coordination-driven self-assembly of tetra-(4-pyridylphenyl)ethylene, cis-Pt(PEt3)2(OTf)2 and tetracarboxylic ligands. These metallacages exhibit good emission both in solution and in the solid state because the coordination bonds and aggregation restrict the molecular motions of TPE synergistically, which suppresses the non-radiative decay of these metallacages. Impressively, one of the metallacages achieves very high fluorescence quantum yield (ΦF=88.46 %) in the solid state, which is further used as the coatings of a blue LED bulb to achieve white-light emission. The study not only provides a general method to the preparation of TPE-based metallacages but also explores their applications as solid-state fluorescent materials, which will promote the future design and applications of metallacages as useful emissive devices.
AB - The construction of solid-state fluorescent materials with high quantum yield and good processability is of vital importance in the preparation of organic light-emitting devices. Herein, a series of tetraphenylethylene (TPE)-based multicomponent emissive metallacages are prepared by the coordination-driven self-assembly of tetra-(4-pyridylphenyl)ethylene, cis-Pt(PEt3)2(OTf)2 and tetracarboxylic ligands. These metallacages exhibit good emission both in solution and in the solid state because the coordination bonds and aggregation restrict the molecular motions of TPE synergistically, which suppresses the non-radiative decay of these metallacages. Impressively, one of the metallacages achieves very high fluorescence quantum yield (ΦF=88.46 %) in the solid state, which is further used as the coatings of a blue LED bulb to achieve white-light emission. The study not only provides a general method to the preparation of TPE-based metallacages but also explores their applications as solid-state fluorescent materials, which will promote the future design and applications of metallacages as useful emissive devices.
KW - aggregation-induced emission
KW - coordination-induced emission
KW - metallacages
KW - self-assembly
KW - solid-state fluorescent materials
UR - https://www.scopus.com/pages/publications/85104833404
U2 - 10.1002/anie.202100463
DO - 10.1002/anie.202100463
M3 - 文章
C2 - 33724636
AN - SCOPUS:85104833404
SN - 1433-7851
VL - 60
SP - 12293
EP - 12297
JO - Angewandte Chemie - International Edition
JF - Angewandte Chemie - International Edition
IS - 22
ER -