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A Study of the Feasibility of Single Molecule Scattering Analysis with X-Ray Free Electron Lasers

机译:X射线自由电子激光进行单分子散射分析的可行性研究

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The feasibility of single molecule elastic scattering analysis with the X-ray free electron laser (XFEL) sources in operation and under construction around the world was investigated for various biological and synthetic materials (pepsin, polyethylene, poly(4,4'-oxydiphenylene pyromellitimide), and ferric oxide). It was found that existing XFEL facilities provide coherent pulse X-ray beams with the required energies (8.3-12.4 keV), but their fluxes are too low for single molecule elastic scattering experiment to determine the three-dimensional structures of such molecules. For single molecule scattering, the XFEL facilities need to improve their beam flux density to 2×l0~(15)to 7×l0~(18) photons pulse ~1μm~(-2), depending on the beam energy. However, the existing XFEL facilities' sources were found to enable the elastic scattering analysis of pepsin and Synthetic polymers with sample sizes of 1-160 μm, as well as of ferric oxide with sample sizes of >80 nm. These criteria for the sample size can be extended to other soft (biological, organic, and polymer molecules) and hard (niolecules containing heavy metals) materials. In addition, the inelastic scattering, absorption, and radiation damage characteristics of the chosen materials when exposed to the XFEL sources were examined.
机译:对于各种生物和合成材料(胃蛋白酶,聚乙烯,聚(4,4'-氧二苯亚甲基均苯四甲酰亚胺),使用X射线自由电子激光(XFEL)光源在世界范围内正在运行和在建的单分子弹性散射分析的可行性进行了研究)和三氧化二铁)。已发现,现有的XFEL设施可为相干脉冲X射线束提供所需的能量(8.3-12.4 keV),但对于单分子弹性散射实验无法确定此类分子的三维结构,其通量太低。对于单分子散射,XFEL设备需要根据束能量将其束通量密度提高到2×l0〜(15)到7×l0〜(18)个光子脉冲〜1μm〜(-2)。但是,发现现有的XFEL设施的来源能够对样品尺寸为1-160μm的胃蛋白酶和合成聚合物以及样品尺寸> 80 nm的三氧化二铁进行弹性散射分析。样本量的这些标准可以扩展到其他软(生物,有机和聚合物分子)和硬(含有重金属的分子)材料。此外,还检查了所选材料在暴露于XFEL源时的非弹性散射,吸收和辐射破坏特性。

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