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1.
Science ; 348(6241): 1340-3, 2015 Jun 19.
Article in English | MEDLINE | ID: mdl-26089510

ABSTRACT

The efficiency of biological photosynthesis results from the exquisite organization of photoactive elements that promote rapid movement of charge carriers out of a critical recombination range. If synthetic organic photovoltaic materials could mimic this assembly, charge separation and collection could be markedly enhanced. We show that micelle-forming cationic semiconducting polymers can coassemble in water with cationic fullerene derivatives to create photoinduced electron-transfer cascades that lead to exceptionally long-lived polarons. The stability of the polarons depends on the organization of the polymer-fullerene assembly. Properly designed assemblies can produce separated polaronic charges that are stable for days or weeks in aqueous solution.


Subject(s)
Fullerenes/chemistry , Photosynthesis , Polymers/chemistry , Electron Transport , Semiconductors
2.
Nanoscale ; 6(9): 4652-8, 2014 May 07.
Article in English | MEDLINE | ID: mdl-24647752

ABSTRACT

We report the design and synthesis of a nano-container consisting of mesoporous silica nanoparticles with the pore openings covered by "snap-top" caps that are opened by near-IR light. A photo transducer molecule that is a reducing agent in an excited electronic state is covalently attached to the system. Near IR two-photon excitation causes inter-molecular electron transfer that reduces a disulfide bond holding the cap in place, thus allowing the cargo molecules to escape. We describe the operation of the "snap-top" release mechanism by both one- and two-photon activation. This system presents a proof of concept of a near-IR photoredox-induced nanoparticle delivery system that may lead to a new type of photodynamic drug release therapy.


Subject(s)
Drug Carriers/chemistry , Nanoparticles/chemistry , Electron Transport , Infrared Rays , Oxidation-Reduction , Photons , Photosensitizing Agents/chemistry , Porosity , Rhodamines/chemistry , Silicon Dioxide/chemistry
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