2021
DOI: 10.1016/j.jorganchem.2020.121616
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Chiral gold(I)-containing polymeric composites: chiroptical sensing and circularly polarized luminescence

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Cited by 8 publications
(7 citation statements)
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“…Bu and coworkers reported recently the interaction between the cationic gold(I) complexes 99-100 (Figure 41) and several anionic block copolymers [67,68]. The electrostatic interaction between the gold(I) complexes and poly(styrene-co-acrylate sodium) and poly(ethylene oxide-co-acrylate sodium) block copolymers gave rise to the formation of brightly luminescent micelles.…”
Section: Assembly/disassembly Processes Based On the Interaction Of Gold(i) Complexes With Other Speciesmentioning
confidence: 96%
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“…Bu and coworkers reported recently the interaction between the cationic gold(I) complexes 99-100 (Figure 41) and several anionic block copolymers [67,68]. The electrostatic interaction between the gold(I) complexes and poly(styrene-co-acrylate sodium) and poly(ethylene oxide-co-acrylate sodium) block copolymers gave rise to the formation of brightly luminescent micelles.…”
Section: Assembly/disassembly Processes Based On the Interaction Of Gold(i) Complexes With Other Speciesmentioning
confidence: 96%
“…475 nm) and quantum yield upon increasing the molecular weight of the chiral block copolymer, which was related with an increase in aurophilic interactions occurring in the system. Interestingly, a chirality transfer and amplification from the chiral block copolymers to the gold(I) complexes was observed, which provoked a remarkable increase of the CD and CPL signals [68].…”
Section: Assembly/disassembly Processes Based On the Interaction Of Gold(i) Complexes With Other Speciesmentioning
confidence: 99%
“…Based on intermolecular interactions, Fujiki et al [136] achieved chirality induction and CPL from racemic polyfluorene using cellulose derivatives as template. Some studies have further demonstrated that CPL-active hybrids can be fabricated when luminescent metal ions are coordinated with chiral polymers [137][138][139][140].…”
Section: Constructing Cpl-active Polymers Via Physically Blendingmentioning
confidence: 99%
“…Materials with circularly polarized luminescence (CPL) have attracted widespread attention due to their wide potential applications for 3D displays, optical data storage, photoelectric devices, asymmetric synthesis, and so on. [1][2][3][4][5][6][7][8][9][10][11][12][13][14][15][16][17][18][19] In general, the degree of circular polarization is defined by the strength of left and right circularly polarized light (I L and I R ). 20 In order to effectively evaluate the intrinsic properties of CPL materials, the luminescence dissymmetry factor (g lum ) is defined as the difference between the strength of I L and I R divided by their average total luminescence strength, namely g lum = 2 Â (I L À I R )/ (I L + I R ).…”
Section: Introductionmentioning
confidence: 99%