Abstract

While polymerizations of 1-phenyl-1-propyne (PP) and 1-phenyl-1-butyne (PB) initiated by WCl6−Ph4Sn at room temperature yield small amounts of polymers (0.05−5.3%) with low molecular weights (Mn 8000−15000) and high polydispersity indexes (PDI up to 109), addition of C60 into the initiator mixture dramatically boosts its catalytic activity, producing polymers with high Mns (up to 171 000) and low PDIs (down to 2.2) in high yields (up to 99.5%). The resultant polymers are soluble, stable, and film-forming. GPC, IR, NMR, UV, and XRD analyses reveal that the polymers consist of polyacetylene chains and covalently bound C60 cages (up to 9.1 wt %). Whereas photoluminescence of C60-containing polyPPs is faint, C60-containing polyPBs emit strong blue light (λmax = 456 nm) readily observable with the naked eye under normal laboratory lighting. Compared with the parent C60, both two groups of the fullerene polyacetylenes show better optical limiting performance, and their THF solutions, with higher linear transmittance, attenuate the power of intense 532 nm optical pulses to lower saturation fluence.

Keywords

PhotoluminescencePolymerQuantum yieldDispersityMaterials sciencePolyacetylenePolymerizationLimitingPhotochemistryPolymer chemistryAnalytical Chemistry (journal)ChemistryOrganic chemistryOpticsFluorescenceOptoelectronics

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Publication Info

Year
2000
Type
article
Volume
12
Issue
5
Pages
1446-1455
Citations
79
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Ben Zhong Tang, Hongyao Xu, Jacky W. Y. Lam et al. (2000). C<sub>60</sub>-Containing Poly(1-phenyl-1-alkynes):  Synthesis, Light Emission, and Optical Limiting. Chemistry of Materials , 12 (5) , 1446-1455. https://doi.org/10.1021/cm990799h

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DOI
10.1021/cm990799h