Author:
Malinsky Petr,Novák Josef,Štěpanovská Eva,Slepička Petr,Švorčík Václav,Szőkölová Kateřina,Marvan Petr,Sofer Zdeněk,Mackova Anna
Abstract
The electric properties of polymers are increasingly important in a wide range of applications such as sensors, energy storages, microelectronics, and filtration membranes among others. In this work, the effect of multi-energetic Au ion implantation on the graphene oxide (GO), polyimide (PI), polyethylene terephthalate (PET) and polylactide (PLLA) elemental, chemical, structural end electric properties is presented with potential application in 3D metal-dielectric structure synthetization. The three energies, 3.2, 1.6, 0.8 MeV of Au ions with fluence 3.75×1014 cm-2 were used in ascending or descending order to create two sample sets, which were subsequently analysed by RBS, ERDA, EDS and AFM. RBS analysis was used for Au-depth profile characterization in the implanted samples, the profiles agree reasonably with those simulated by SRIM code. Electrical properties were investigated by standard two-point technique with respect to the used parameters of the ion irradiation. The sheet resistance decreases after ion irradiation and it is evident that the ascending order of ion implantation energies has more significant effect on the conductivity enhancement compare to the descending one.
Cited by
2 articles.
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1. The sensory and photo-catalytic properties of graphene oxide and polyimide thin films implanted by 1500 keV Cu ions;Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms;2023-08
2. The catalytic, sensory and electrical properties of GO, PI and PLLA implanted by low-energy copper ions;Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms;2023-07