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91.
Jewart CM Chen T Lindner E Fiebrandt J Rothhardt M Schuster K Kobelke J Bartelt H Chen KP 《Optics letters》2011,36(23):4491-4493
This Letter presents simulation and experimental results that explore bending insensitivity of fiber Bragg gratings in suspended-core optical fibers. The implementation of thin silica bridge in the fibers enhances index contrast of the fiber core and reduces bending-induced strain transfer to the fiber core. This fiber design lead to a reduction of over 7 times in strain-induced fiber Bragg grating resonant peak shifts in the suspended-core fiber compared with that in standard telecommunication fiber, and an 0.14 dB bending loss at a bending radius of 6.35 mm. 相似文献
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H. Bürsing J. Lindner S. Hess P. Vöhringer 《Applied physics. B, Lasers and optics》2000,71(3):411-417
Polarization-resolved femtosecond experiments are shown to yield valuable insight into transition-state dynamics associated
with ultra-fast photodissociation reactions of triatomic species in liquid solution. After the fundamental act of bond fission
is completed, such experiments reveal rotational dynamics of the fragments, which can be used to extract information regarding
fragment rotational excitation in the asymptotic limit of the reaction.
Received: 4 October 1999 / Published online: 30 June 2000 相似文献
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Dr. Giuseppina Pieretti Sara Carillo Dr. Buko Lindner Kwang Kyu Kim Keun Chul Lee Jung‐Sook Lee Prof. Dr. Rosa Lanzetta Prof. Dr. Michelangelo Parrilli Prof. Dr. Maria Michela Corsaro 《Chemistry (Weinheim an der Bergstrasse, Germany)》2012,18(12):3729-3735
A novel core structure among bacterial lipopolysaccharides (LPS) that belong to the genus Halomonas has been characterized. H. stevensii is a moderately halophilic microorganism, as are the majority of the Halomonadaceae. It brought to light the pathogenic potential of this genus. On account of their role in immune system elicitation, elucidation of LPS structure is the mandatory starting point for a deeper understanding of the interaction mechanisms between host and pathogen. In this paper we report the structure of the complete saccharidic portion of the LPS from H. stevensii. In contrast to the finding that the O‐antigen is usually covalently linked to the outer core oligosaccharide, we could demonstrate that the O‐polysaccharide of H. stevensii is linked to the inner core of an LPS. By means of high‐performance anion‐exchange chromatography with pulsed amperometric detection we were able to isolate the core decasaccharide as well as a tridecasaccharide constituted by the core region plus one O‐repeating unit after alkaline degradation of the LPS. The structure was elucidated by one‐ and two‐dimensional NMR spectroscopy, ESI Fourier transform ion cyclotron resonance (FT‐ICR) mass spectrometry, and chemical analysis. 相似文献
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Dendronized Hyperbranched Macromolecules: Soft Matter with a Novel Type of Segmental Distribution 下载免费PDF全文
Priv.‐Doz. Dr. Albena Lederer Prof. Dr. Walther Burchard Tobias Hartmann Johannes S. Haataja Dr. Nikolay Houbenov Andreas Janke Dr. Peter Friedel Dr. Ralf Schweins Dr. Peter Lindner 《Angewandte Chemie (International ed. in English)》2015,54(43):12578-12583
Dendronization of a hyperbranched polyester with different generation dendrons leads to pseudo‐dendritic structures. The hyperbranched core is modified by the divergent coupling of protected monomer units to the functional groups. Compared to dendrimers, the synthetic effort is significantly less, but the properties are very close to those of high‐generation dendrimers. The number of functional groups, molar mass, and rheology behavior even in the early generation (G1–G4) pseudo‐dendrimers strongly resembles the behavior of dendrimers in higher generations (G5–G8). Comparison of the segmental and internal structure with perfect dendrimers is performed using SANS, dynamic light scattering and viscosity analysis, microscopy and molecular dynamics simulation. The interpretation of the results reveals unique structural characteristics arising from lower segmental density of the core, which turns into a soft nano‐sphere with a smooth surface even in the first generation. 相似文献
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