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Silver incorporation on viscose and cotton fibers after air, nitrogen and oxygen DBD plasma pretreatment

机译:空气,氮气和氧气中DBD等离子体预处理后,粘胶纤维和棉纤维上的银结合

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摘要

Dielectric barrier discharge (DBD) pretreatments in air, nitrogen and oxygen plasma of viscose and cotton fabrics with subsequent immobilization of silver were studied. Surface activation of treated fibers was evaluated through subsequent sorption of silver from aqueous AgNO_3 solution, after which changes in the surface morphology were monitored and quantity of silver deposition on fabric was measured. The plasma treatment was done in volume DBD discharge with the gap distance between electrodes of 0. 5 and 2 mm. Depending on the gas used in pretreatment, significant difference in the way silver bonds to the textile surface was found. Nitrogen plasma pretreatment with gap distance of 0. 5 mm led to the homogeneous fiber coating by silver nanoparticles with average size up to 300 nm estimated by SEM, while fibers treated in oxygen plasma adsorbed silver in a form of ions. The plasma pretreatment in air leads to changes that contain features of fibers treated in both nitrogen and oxygen DBD plasma. Distinct difference of used configuration of the plasma source is a use of gap distance 0. 5 mm, which is in order of textile thickness. Observed results allow us to report a new way how to immobilize silver nanoparticles onto textile fibers using plasma pretreatment with subsequent sorption of silver from aqueous solution
机译:研究了粘胶纤维和棉织物在空气,氮气和氧气等离子体中的电介质阻挡放电(DBD)预处理以及随后的银固定化。通过随后从AgNO_3水溶液中吸附银来评估处理过的纤维的表面活化,然后监测表面形态的变化并测量银在织物上的沉积量。在体积DBD放电中进行等离子处理,电极之间的间隙距离为0. 5和2 mm。根据预处理中使用的气体,发现银与纺织品表面结合的方式存在显着差异。间隙距离为0. 5 mm的氮等离子体预处理导致了平均粒径最大为300 nm的银纳米颗粒对纤维的均匀涂覆,而SEM估计,平均粒径最大为300 nm,而在氧等离子体中处理过的纤维则以离子形式吸附了银。空气中的等离子体预处理会导致变化,该变化包含在氮气和氧气DBD等离子体中处理过的纤维的特征。等离子体源所使用的构造的不同之处在于间隙距离为0. 5 mm,这是织物厚度的顺序。观察到的结果使我们能够报告一种新方法,该方法如何使用等离子体预处理以及随后从水溶液中吸附银的方法将银纳米颗粒固定到纺织纤维上

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