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首页> 外文期刊>Nature reviews Cancer >Performance Enhancement of a Quartz Tuning Fork Sensor Using a Cellulose Nanocrystal-Reinforced Nanoporous Polymer Fiber
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Performance Enhancement of a Quartz Tuning Fork Sensor Using a Cellulose Nanocrystal-Reinforced Nanoporous Polymer Fiber

机译:使用纤维素纳米晶 - 增强纳米多孔聚合物纤维的石英调谐叉传感器的性能提高

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摘要

A cellulose nanocrystal (CNC)-reinforced polymethylmethacrylate (PMMA) fiber was obtained via electrospinning, and then attached between the two tines of a quartz tuning fork (QTF). The change in the resonance frequency of the CNC/PMMA composite fiber-coated QTF (CP-QTF) was measured upon being exposed to various concentrations of ethanol vapor. The frequency decreased as the ethanol vapor concentration increased, because the modulus of the composite fiber decreased due to the adsorption of the ethanol vapor. The composite fiber obtained at a high relative humidity (RH; 60% RH, CP60 fiber) produced a highly porous structure as a result of the moisture adsorption-induced phase separation of PMMA. The porosity of the CP60 fiber was higher than that of a CNC/PMMA composite fiber obtained at 30% RH (CP30 fiber) or that of a plain PMMA fiber obtained at 60% RH (P60 fiber), because hygroscopic CNCs promote moisture adsorption. The CP60 fiber-coated QTF (CP60-QTF) exhibited a greater frequency change and faster response time than P60-QTF and CP30-QTF upon exposure to ethanol vapor at the same concentration. The enhanced performance of CP60-QTF was attributed to its higher surface area and larger fiber modulus.
机译:通过静电纺塑获得纤维素纳米晶(CNC) - 裂解聚甲基丙烯酸甲酯(PMMA)纤维,然后在石英调谐叉(QTF)的两片之间连接。在暴露于各种浓度的乙醇蒸气时测量CNC / PMMA复合纤维涂覆的QTF(CP-QTF)的共振频率的变化。随着乙醇蒸气浓度的增加,频率降低,因为复合纤维的模量由于乙醇蒸气的吸附而降低。在高相湿度(RH; 60%RH,CP60纤维)下获得的复合纤维由于PMMA的水分吸附诱导的相分离而产生高度多孔的结构。 CP60纤维的孔隙率高于30%RH(CP30纤维)中获得的CNC / PMMA复合纤维的孔隙率或在60%RH(P60纤维)中获得的普通PMMA纤维,因为吸湿性CNC促进水分吸附。 CP60纤维涂覆的QTF(CP60-QTF)在暴露于相同浓度时,在暴露于乙醇蒸汽时,比P60-QTF和CP30-QTF更大的频率变化和更快的响应时间。 CP60-QTF的增强性能归因于其较高的表面积和较大的纤维模量。

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