Zobrazeno 1 - 10
of 31
pro vyhledávání: '"Adillah Nurashikin Arshad"'
Autor:
Mohamad Rusop Mahmood, Rozana Mohd Dahan, Nur Syahirah Mahmud Zohdi, Adillah Nurashikin Arshad, Muhammad Hafizuddin Md Razif
Publikováno v:
Advances in Materials and Processing Technologies. 3:300-307
This study investigates the effect of ZnO nanofillers loading ratios on Polyvinylideneflouride-Triflouroethylene/Zinc Oxide (PVDF-TrFE/ZnO) nanocomposites thin films; filled single layer and bilayer film. Both films were produced using a spin coater
Autor:
Ri Hanum Yahaya Subban, Adillah Nurashikin Arshad, M. D. Rozana, M. Rusop, Wan Haliza Abd Majid, M. H. Wahid
Publikováno v:
Journal of Nanomaterials, Vol 2019 (2019)
This study examines the dielectric properties of filled PVDF film and filled PVDF-TrFE film incorporated with 1, 3, 5, and 7 weight percentages of magnesium oxide (MgO) nanofillers. The metal-insulator-metal (MIM) configuration demonstrates PVDF/MgO
Autor:
Muhamad Naiman Sarip, M. D. Rozana, Adillah Nurashikin Arshad, M. H. Wahid, Z. Habibah, M. Rusop
Publikováno v:
AIP Conference Proceedings.
This study investigates the effect of annealing on the topography, morphology and crystal phases of poly(vinylideneflouride)/Magnesium Oxide (MgO) nanocomposites thin films via AFM, FESEM and ATR-FTIR. The nanocomposites thin films were annealed at t
Autor:
Mohammad Faiz Hadi Mohd Noor, Wan Izhan Nawawi Wan Ismail, Muhamad Naiman Sarip, Rozana Mohd Dahan, Norlin Shuhaime, Zuliahani Ahmad, Adillah Nurashikin Arshad
Publikováno v:
AIP Conference Proceedings.
In this research, the different formulation composition of PVA and PVP were prepared and characterized as conductive polymer coatings. The research was done by using different loadings of PVP in polymer blends film which were 2.5g, 5.0g, and 7.5g of
Autor:
Yap Seong Ling, M. H. Wahid, Muhamad Naiman Sarip, Dzaraini Kamarun, Rozana Mohd Dahan, Adillah Nurashikin Arshad
Publikováno v:
Advanced Materials Research. 1134:12-15
The impact of surface plasma modification on PVDF-TrFE film with different exposure time was investigated using X-ray photoelectron spectroscopy (XPS). The main emphasis of this study was to optimize the exposure time of argon plasma on the surface o
Autor:
Mohamad Rusop Mahmood, Rozana Mohd Dahan, Adillah Nurashikin Arshad, Muhamad Naiman Sarip, M. H. Wahid
Publikováno v:
Advanced Materials Research. 1134:16-22
Poly (vinylideneflouride)/nanomagnesium oxide (PVDF/MgO) film with MgO loading percentage of 7% were annealed with various annealing temperatures ranging from 70°C to 170°C. The PVDF/MgO(7%) thin films were fabricated using spin coating technique w
Autor:
Siti Zaleha Sa'ad, Rozana Mohd Dahan, Mohamad Rusop Mahmood, Muhamad Naiman Sarip, Adillah Nurashikin Arshad, Habibah Zulkefle, M. H. Wahid
Publikováno v:
Advanced Materials Research. 1134:6-11
The enhancement of ferroelectric and dielectric properties of PVDF-TrFE by incorporating various percentages of Magnesium Oxide (1 – 7%) for spin coated nanocomposite thin film was demonstrated. Observations showed uniform distribution and low aggl
Autor:
Mohamad Rusop Mahmood, Rozana Mohd Dahan, Adillah Nurashikin Arshad, Nor Athirah Mohamed, Dzaraini Kamarun, Mohd Hafiz Wahid, Muhamad Naiman Sarip, Engku Zaharah Engku Zawawi
Publikováno v:
Advanced Materials Research. 1134:39-43
This study employed 7 weight percent (wt.%) of untreated and treated MgO nanofillers incorporated into PVDF polymer. The effects of coupling agents (chlorotrimethylsilane and triacetoxyvinylsilane) on the polymorphism of PVDF/MgO nanocomposite were i
Autor:
Rozana Mohd Dahan, M. H. Wahid, Adillah Nurashikin Arshad, Muhamad Naiman Sarip, Mohamad Rusop Mahmood
Publikováno v:
Advanced Materials Research. 895:221-225
Poly(vinylidene flouride)/nano-magnesium oxide (PVDF/MgO) nanocomposites with MgO loading percentage of (7% wt. %) were annealed with various annealing temperatures ranging from 70°C to 170°C with rapid removal from the oven. From dielectric consta
Autor:
Muhamad Naiman Sarip, Rozana Mohd Dahan, Yap Seong Ling, Dzaraini Kamarun, M. H. Wahid, Adillah Nurashikin Arshad
Publikováno v:
Advanced Materials Research. 895:138-141
This study investigates the plasma surface modified spin coated PVDF-TrFE (70/30) film of 200nm thick using Atomic Force Microscopy (AFM), Water Contact Angle (WCA) and Fourier Transform Infrared Spectroscopy (FTIR). The surface of the spin coated PV