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Bacterium organizes hierarchical amorphous structure in microbial cellulose

机译:细菌在微生物纤维素中组织分层无定形结构

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摘要

A pellicle, a gel film of microbial cellulose, is a supermolecular system containing 99% of water by weight, which is closely related to an amorphous structure in it. Using ultra-small–angle neutron scattering, in order to cover over a wide range of length scales from nm to 10 μm, we examined the hierarchical amorphous structure in the microbial cellulose, which is synthesized by a bacterium (Acetobacter xylinum). The microbial cellulose swollen by water shows small-angle scattering that obeys a power law q-behavior according to q as a function of the magnitude of the scattering vector q. The power law, determined by scattering, is attributed to a mass fractal due to the distribution of the center of mass for the crystallite (microfibril) in amorphous cellulose swollen by water. As q increases, takes the values of 2.5, 1, and 2.35, corresponding, respectively, to a gel network composed of bundles, a bundle composed of cellulose ribbons, and concentration fluctuations in a bundle. From the mass fractal q-behavior and its length scale limits, we evaluated a volume fraction of crystallite in microbial cellulose. It was found that 90% of the cellulose bundle is occupied by amorphous cellulose containing water.
机译:防护膜是一种微生物纤维素的凝胶膜,是一种超分子系统,其中包含99%的水(按重量计),其中的水与其中的非晶结构密切相关。为了覆盖从nm到10μm的各种长度尺度,使用超小角度中子散射,我们检查了细菌纤维素(木醋杆菌)合成的微生物纤维素中的分层无定形结构。被水溶胀的微生物纤维素表现出小角散射,该小角散射遵循q的幂律q行为,该行为是散射矢量q的函数。通过散射确定的幂定律归因于质量分形,这是由于水溶胀的无定形纤维素中微晶(微纤维)的质心分布所致。随着q的增加,取值为2.5、1和2.35,分别对应于由束组成的凝胶网络,由纤维素带组成的束以及束中的浓度波动。从质量分形q行为及其长度尺度极限,我们评估了微生物纤维素中微晶的体积分数。发现纤维素束的90%被含水的无定形纤维素占据。

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