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1.
Angew Chem Int Ed Engl ; 54(42): 12334-8, 2015 Oct 12.
Artigo em Inglês | MEDLINE | ID: mdl-26136252

RESUMO

A new class of π-conjugated polycyclic hydrocarbons that promises interesting electronic properties is presented. The synthesis and extension of the S,N-heteroacene series consisting of only five-membered heterocyclic rings up to a very long, stable, and still soluble decacene SN10 is realized by multiple Pd-catalyzed aminations of halogenated thiophene precursors as key reactions. These novel heteroacenes were characterized by optical spectroscopy and electrochemistry providing interesting structure-property relationships. Nearly complete bond-length equalization in the inner part of the conjugated backbone and an unusual herringbone packing in the solid state underline the structural features of these novel systems.

2.
J Mater Chem B ; 2(45): 7861-7865, 2014 Dec 07.
Artigo em Inglês | MEDLINE | ID: mdl-32262075

RESUMO

We report synthesis and photophysical characterization of d-(+) and l-(-) mannose terminated oligothiophene hybrids. In polar environment fluorescently quenched suprastructures were formed. Fluorescence was recovered by integration of the hybrids into phospholipidic bilayers of artificial vesicles as well as membrane compartments of myeloid cells, a defined hematopoetic lineage.

3.
Beilstein J Nanotechnol ; 4: 680-9, 2013.
Artigo em Inglês | MEDLINE | ID: mdl-24205464

RESUMO

The optimization of solution-processed organic bulk-heterojunction solar cells with the acceptor-substituted quinquethiophene DCV5T-Bu 4 as donor in conjunction with PC61BM as acceptor is described. Power conversion efficiencies up to 3.0% and external quantum efficiencies up to 40% were obtained through the use of 1-chloronaphthalene as solvent additive in the fabrication of the photovoltaic devices. Furthermore, atomic force microscopy investigations of the photoactive layer gave insight into the distribution of donor and acceptor within the blend. The unique combination of solubility and thermal stability of DCV5T-Bu 4 also allows for fabrication of organic solar cells by vacuum deposition. Thus, we were able to perform a rare comparison of the device characteristics of the solution-processed DCV5T-Bu 4 :PC61BM solar cell with its vacuum-processed DCV5T-Bu 4 :C60 counterpart. Interestingly in this case, the efficiencies of the small-molecule organic solar cells prepared by using solution techniques are approaching those fabricated by using vacuum technology. This result is significant as vacuum-processed devices typically display much better performances in photovoltaic cells.

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