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1.
Dalton Trans ; 53(24): 10328-10337, 2024 Jun 17.
Article in English | MEDLINE | ID: mdl-38836318

ABSTRACT

We previously reported that phenyl- and vinyl-silsesquioxanes (SQs), [RSiO1.5]8,10,12 (R = Ph or vinyl) functionalized with three or more conjugated moieties show red-shifted absorption- and emission features suggesting 3-D conjugation via a cage centered LUMOs. Corner missing [PhSiO1.5]7(OSiMe3)3 and edge opened, end capped [PhSiO1.5]8(OSiMe2)2 (double decker, DD) analogs also offer red shifted spectra again indicating 3-D conjugation and a cage centered LUMO. Copolymerization of DD [PhSiO1.5]8(OSiMevinyl)2 with multiple R-Ar-Br gives copolymers with emission red-shifts that change with degree of polymerization (DP), exhibit charge transfer to F4TNCQ and terpolymer averaged red-shifts suggesting through chain conjugation even with two (O-Si-O) end caps possibly via a cage centered LUMO. Surprisingly, ladder (LL) SQ, (vinylMeSiO2)[PhSiO1.5]4(O2SiMevinyl) copolymers offer emission red-shifts even greater for analogous copolymers requiring a different explanation. Here we assess the photophysical behavior of copolymers of a more extreme SQ form: the half cage [PhSiO1.5]4(OSiMe2Vinyl)4, Vy4HC SQs. We again see small red-shifted absorptions coupled with significant red-shifted emissions, even with just a half cage, thus further supporting the existence of pπ-dπ and/or σ*-π* conjugation through Si-O-Si bonds and contrary to most traditional views of Si-O-Si linked polymers. These same copolymers donate an electron to F4TCNQ generating the radical anion, F4TCNQ-. as further proof of conjugation. Column chromatographic separation of short from longer chain oligomers reveals a direct correlation between DP and emission λmax red-shifts as another indication of conjugation. Further, one- and two-photon absorption and emission spectroscopy reveals multiple excited fluorescence-emitting states in a violation of Kasha's rule wherein emission occurs only from the lowest excited state. Traditional modeling studies again find HOMO LUMO energy levels residing only on the aromatic co-monomers rather than through Si-O-Si bonds as recently found in related polymers.

2.
J Nanosci Nanotechnol ; 19(4): 1908-1922, 2019 04 01.
Article in English | MEDLINE | ID: mdl-30486931

ABSTRACT

This work explores the use of two different phyllosilicate structures (muscovite mica and bentonite) as co-support for in situ polymerization of propylene using Ziegler-Natta catalyst based on MgCl2/TiCl4 with electron donor for isotacticity control. It was observed along the experiments that the mass ratio MgCl2:mica needs to be at least 3:1 in order to maintain a feasible catalyst activity. It was found through XRD, TEM, SEM and DMA that crystallinity of polypropylene composites is different according to the nature of phyllosilicates used and the mechanical performance of mica composites, as long as wettability and thermal stability were in general higher than those of PP/bentonite composites. Moreover, activity of MgCl2:mica supported catalyst was higher than that co-supported on bentonite. Chemical modification in mica showed to improve in more than 500% the elastic modulus of PP/mica composites.

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