TY - JOUR
T1 - Seeing the unseen
T2 - AIE luminogens for super-resolution imaging
AU - Wang, Zhi
AU - Zhou, Yu
AU - Xu, Ruohan
AU - Xu, Yanzi
AU - Dang, Dongfeng
AU - Shen, Qifei
AU - Meng, Lingjie
AU - Tang, Ben Zhong
N1 - Publisher Copyright:
© 2021 Elsevier B.V.
PY - 2022/1/15
Y1 - 2022/1/15
N2 - Super-resolution imaging (SRI) is of great significance to break the Abbe's diffraction limit, enabling visualization and dynamic monitoring with ultra-high resolution in both material science and biology. Fluorophores play an important role in SRI. Among them, aggregation-induced emission (AIE) luminogens (AIEgens) are one of the most promising imaging agents for SRI. They are easy to be synthesized and possess high tailoring ability, high brightness in aggregated states, large Stokes' shift, good photo-stability, and also excellent biocompatibility. Based on this consideration, the recent progress on AIEgens for SRI is summarized here. The working principles of AIEgens and several SRI techniques are also introduced to illustrate the material requirements. The new achievements in AIEgens research for SRI, including their chemical structures, optical properties, and applications, are highlighted in detail. The goal is to provide the readers with an overview of the recent advances in AIEgens for SRI. It is also anticipated that a deep understanding of the relationship between the AIEgens' properties and their imaging performance can be obtained. This review also aims to provide a set of guidelines to develop new AIEgens for fluorescence imaging to achieve superior resolution, thus resulting a better understanding of their mechanism in both biology and material science.
AB - Super-resolution imaging (SRI) is of great significance to break the Abbe's diffraction limit, enabling visualization and dynamic monitoring with ultra-high resolution in both material science and biology. Fluorophores play an important role in SRI. Among them, aggregation-induced emission (AIE) luminogens (AIEgens) are one of the most promising imaging agents for SRI. They are easy to be synthesized and possess high tailoring ability, high brightness in aggregated states, large Stokes' shift, good photo-stability, and also excellent biocompatibility. Based on this consideration, the recent progress on AIEgens for SRI is summarized here. The working principles of AIEgens and several SRI techniques are also introduced to illustrate the material requirements. The new achievements in AIEgens research for SRI, including their chemical structures, optical properties, and applications, are highlighted in detail. The goal is to provide the readers with an overview of the recent advances in AIEgens for SRI. It is also anticipated that a deep understanding of the relationship between the AIEgens' properties and their imaging performance can be obtained. This review also aims to provide a set of guidelines to develop new AIEgens for fluorescence imaging to achieve superior resolution, thus resulting a better understanding of their mechanism in both biology and material science.
KW - Abbe's diffraction limit
KW - Aggregation-induced emission
KW - Fluorescence imaging
KW - Organic fluorophores
KW - Super-resolution imaging
UR - https://www.scopus.com/pages/publications/85118492415
U2 - 10.1016/j.ccr.2021.214279
DO - 10.1016/j.ccr.2021.214279
M3 - 文献综述
AN - SCOPUS:85118492415
SN - 0010-8545
VL - 451
JO - Coordination Chemistry Reviews
JF - Coordination Chemistry Reviews
M1 - 214279
ER -