Interactions in single wall carbon nanotubes/pyrene/porphyrin nanohybrids

被引:282
作者
Ehli, Christian
Aminur Rahman, G. M.
Jux, Norbert
Balbinot, Domenico
Guldi, Dirk M.
Paolucci, Francesco
Marcaccio, Massimo
Paolucci, Demis
Melle-Franco, Manuel
Zerbetto, Francesco
Campidelli, Stephane
Prato, Maurizio
机构
[1] Inst Theoret & Phys Chem, D-91058 Erlangen, Germany
[2] Inst Organ Chem, D-91054 Erlangen, Germany
[3] Univ Bologna, Dipartimento Chim G Ciamician, I-40126 Bologna, Italy
[4] Consorzio Interunisitario Nazl Sci & Tecnol Mat, Unit Bologna, Bologna, Italy
[5] Consorzio Interunisitario Nazl Sci & Tecnol Mat, Unit Trieste, Bologna, Italy
[6] Univ Trieste, Dipartimento Sci Farmaceut, I-34127 Trieste, Italy
关键词
D O I
10.1021/ja0624974
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
This work provides an in-depth look at a range of physicochemical aspects of (i) single wall carbon nanotubes (SWNT), (ii) pyrene derivatives (pyrene(+)), (iii) porphyrin derivatives (ZnP8- and H2P8-), (iv) poly(sodium 4-styrenesulfonate), and (v) their combinations. Implicit in their supramolecular combinations is the hierarchical integration of SWNT (as electron acceptors), together with ZnP8- or H2P8- (as electron donors), in an aqueous environment mediated through pyrene+. This supramolecular approach yields novel electron donor-acceptor nanohybrids (SWNT/pyrene(+)/ZnP8(-) or SWNT/pyrene(+)/H2P8-). In particular, we report on electrochemical and photophysical investigations that as a whole suggest sizeable and appreciable interactions between the individual components. The key step to form SWNT/pyrene(+)/ZnP8- or SWNT/pyrene+/H2P8- hybrids is pi-pi interactions between SWNT and pyrene+, for which we have developed for the first time a sensitive marker. The marker is the monomeric pyrene fluorescence, which although quenched is (i) only present in SWNT/pyrene(+) and (ii) completely lacking in just pyrene(+). Electrostatic interactions help to immobilize ZnP8- or H2P8- onto SWNT/pyrene(+) to yield the final electron donor-acceptor nanohybrids. A series of photochemical experiments confirm that long-lived radical ion pairs are formed as a product of a rapid excited-state deactivation of ZnP8- or H2P8-. This formation is fully rationalized on the basis of the properties of the individual moieties. Additional modeling shows that the data are likely to be relevant to the SWNTs present in the sample, which possess wider diameters.
引用
收藏
页码:11222 / 11231
页数:10
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