首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Synthesis of Dual-Size Cellulose-Polyvinylpyrrolidone Nanofiber Composites via One-Step Electrospinning Method for High-Performance Air Filter
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Synthesis of Dual-Size Cellulose-Polyvinylpyrrolidone Nanofiber Composites via One-Step Electrospinning Method for High-Performance Air Filter

机译:一种通过一步电扫描方法对双尺寸纤维素 - 聚乙烯吡咯烷酮纳米纤维复合材料的合成高性能空气过滤器

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Dual-size nanofibers consisting of a random mixture of nano- and submicron-size nanofibers are promising structures for specific applications such as air filters because of their increased specific surface area and low pressure drop. Synthesis of dual-size nanofibers using one-step electrospinning was reported here for the first time. The formation of well-mixed nano- and submicron-size cellulose polyvinylpyrrolidone nanofiber composites was accomplished utilizing the physical properties of TEMPO-oxidized cellulose nanofibers (i.e., high thixotropy and high magnitude of zeta potential) and tuning the charge of the,polymer jet, which influences the formation and shape of Taylor cone, and Coulombic explosion. The dual-size nanofibers were then spun on the surface of a HEPA filter to obtain a multilayer air filter. Aerosol filtration measurements show that this multilayer air filter has an incredibly high performance, shown by the high quality factor (Qt), 0.117 Pa-1, which is 10 times the Qf of commercial HEPA filters.
机译:由纳米和亚微米型纳米纤维的随机混合物组成的双型纳米纤维是用于特定应用的有希望的结构,例如空气过滤器,因为它们增加的比表面积和低压下降。使用单步静电纺丝的合成双型纳米纤维首次在此报告。利用凝固氧化纤维素纳米纤维的物理性质(即,Zeta电位的高尺寸和高次数)的物理性质,完成了混合型纳米和亚微米纤维素聚乙烯吡咯烷酮纳米纤维复合材料的形成,并调整聚合物喷射的电荷,这影响了泰勒锥体的形成和形状,以及库仑爆炸。然后将双尺寸纳米纤维在HEPA过滤器的表面上旋转以获得多层空气过滤器。气溶胶过滤测量表明,该多层空气过滤器具有令人难以置信的高性能,由高质量因子(QT),0.117Pa-1表示,这是商业HEPA过滤器QF的10倍。

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