2022
DOI: 10.1039/d1py01656c
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A fluorescence strategy for direct quantification of arm components in mikto-arm star copolymers

Abstract: Fluorescent end-functional mikto-arm star copolymers were prepared by an “arm-first” approach mediated by a mixture of macro-RAFT agents. RAFT copolymerization of coumarin-POEGMA, boron-dipyrromethene (BODIPY)-PDMA and bisindolylmaleimide (BIM)-PNIPAM with different fluorophore-labeled...

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Cited by 5 publications
(9 citation statements)
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“…These FPNs can also be produced from a wide range of monomers and impart greater stability compared to those nanoparticles formed from self-assembly, as FPNs prepared via self-assembly are often unstable in physiological solution due to the weak interactions among these amphiphilic fluorescent molecules. Similar studies have also been conducted by the same group and other groups on preparing AIE dyes via RAFT polymerization capable of self-assembly with similar characteristics since 2014 such as AIE crosslinkers, [87][88][89][90][91][92][93][94] AIE pendent groups with non-AIE monomers block copolymers, [95][96][97][98][99][100][101][102][103] AIE end-functionalized block copolymers, [48,49,[104][105][106][107] and AIE-functionalized monomers, [108][109][110][111][112][113][114][115][116][117][118][119] which helped to expand the library of AIE-functionalized polymers.…”
Section: Raft Aie Amphiphilic Block Copolymersmentioning
confidence: 56%
“…These FPNs can also be produced from a wide range of monomers and impart greater stability compared to those nanoparticles formed from self-assembly, as FPNs prepared via self-assembly are often unstable in physiological solution due to the weak interactions among these amphiphilic fluorescent molecules. Similar studies have also been conducted by the same group and other groups on preparing AIE dyes via RAFT polymerization capable of self-assembly with similar characteristics since 2014 such as AIE crosslinkers, [87][88][89][90][91][92][93][94] AIE pendent groups with non-AIE monomers block copolymers, [95][96][97][98][99][100][101][102][103] AIE end-functionalized block copolymers, [48,49,[104][105][106][107] and AIE-functionalized monomers, [108][109][110][111][112][113][114][115][116][117][118][119] which helped to expand the library of AIE-functionalized polymers.…”
Section: Raft Aie Amphiphilic Block Copolymersmentioning
confidence: 56%
“…These FPNs can also be produced from a wide range of monomers and impart greater stability compared to those nanoparticles formed from self‐assembly, as FPNs prepared via self‐assembly are often unstable in physiological solution due to the weak interactions among these amphiphilic fluorescent molecules. Similar studies have also been conducted by the same group and other groups on preparing AIE dyes via RAFT polymerization capable of self‐assembly with similar characteristics since 2014 such as AIE crosslinkers, [ 89–96 ] AIE pendent groups with non‐AIE monomers block copolymers, [ 97–105 ] AIE end‐functionalized block copolymers, [ 51,52,106–109 ] and AIE‐functionalized monomers, [ 110–121 ] which helped to expand the library of AIE‐functionalized polymers.…”
Section: Aie Polymers Via Raftmentioning
confidence: 80%
“…Very recently, Shi et al introduced a fluorescence strategy for the direct quantification of arm species in miktoarm stars. 184 A series of miktoarm star copolymers end-labelled with various fluorophores, including coumarin, BODIPY and bisindolylmaleimide (BIM), were prepared via an “arm-first” approach, in which the arm polymers were synthesised first by RAFT polymerisation, followed by the preparation of stars with the aid of a cross-linker (Fig. 6A).…”
Section: Polymer Architecturementioning
confidence: 99%