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将设计的扩展发色团整合到两亲性四螺旋束肽中以用于非线性光学生物分子材料。

Incorporation of designed extended chromophores into amphiphilic 4-helix bundle peptides for nonlinear optical biomolecular materials.

作者信息

Xu Ting, Wu Sophia P, Miloradovic Ivan, Therien Michael J, Blasie J Kent

机构信息

Department of Chemistry, University of Pennsylvania, 231 South 34th Street, Philadelphia, Pennsylvania 19104, USA.

出版信息

Nano Lett. 2006 Nov;6(11):2387-94. doi: 10.1021/nl062091p.

Abstract

Multipigment ensembles that feature (porphinato)metal components and appropriate ethyne- and oligoyne-based chromophore-to-chromophore connectivity can manifest large optical polarizabilities and hyperpolarizabilities by design. Their vectorial orientation and local environment are controlled upon incorporation into designed amphiphilic 4-helix bundle peptides via axial histidyl ligation without disturbing the peptide's helical secondary structure. The chromophore/peptide stoichiometry can be tuned by varying the peptide's oligomeric state. The chromophore/peptide complexes are thermally stable, making them ideal candidates for the fabrication of nonlinear optical biomolecular materials.

摘要

具有(卟啉)金属成分以及合适的基于乙炔和低聚炔的发色团间连接性的多色素组合体,通过设计可展现出较大的光学极化率和超极化率。在通过轴向组氨酸连接将其并入设计好的两亲性4-螺旋束肽时,它们的矢量取向和局部环境能够得到控制,同时又不会干扰肽的螺旋二级结构。发色团/肽的化学计量比可通过改变肽的寡聚状态来调节。发色团/肽复合物具有热稳定性,这使其成为制造非线性光学生物分子材料的理想候选物。

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