Pengaruh komposisi MnFe2O4 terhadap sifat listrik nanokomposit MnFe2O4/ PVDF yang disintesis dengan metode spin coating (The effect of MnFe2O4 composition on the electrical properties of MnFe2O4 / PVDF nanocomposites synthesized by the spin coating method)

Onny Gustira - Department of Physics, Universitas Negeri Padang, West Sumatera, Indonesia
Yenni Darvina - Department of Physics, Universitas Negeri Padang, West Sumatera, Indonesia
- Ramli - Department of Physics, Universitas Negeri Padang, West Sumatera, Indonesia

Abstract


Manganese ferrite (MnFe2O4) has an MnFe2O4 structure in which its manufacture uses manganese mineral powder. MnFe2O4/ PVDF nanocomposites are made in the form of thin films to see the electrical properties that are affected by variations in composition. MnFe2O4/ PVDF nanocomposites were characterized using XRD, FTIR and FPP. The XRD characterization results show that the Monoclinic Crystalline form for PVDF and Cubic for MnFe2O4, the angular value of 2θ formed is the greater the composition of MnFe2O4 from small to large used, then MnFe2O4 and PVDF are already present in the MnFe2O4/ PVDF angles which are seen in the composition of MnFe2O4 from small to large used, then MnFe2O4 and PVDF are already present in MnFe2O4 / PVDF diffraction peak. FTIR characterization results can be seen that MnFe2O4 successfully binds to PVDF, where Fe-O is a functional group MnFe2O4 and CH2 is a PVDF functional group. The results of the FPP characterization show that if the MnFe2O4 composition is getting bigger and the PVDF composition is getting smaller, the resistivity value is small and the conductivity value is greater.


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References


Sugianti, Rigis., Ramli dan Ratnawulan. 2019. Analisis Sifat Magnetik Nanokomposit CoFe2O4/PANi Yang Disintesis Dengan Metoda Sol-Gel. Pillar of Physics, Vol. 12 No. 1, April 2019, 30 - 37

Uma, S.S., Sharma, R.N., dan Rashmi, S. 2014. Physical and Magnetic Properties

of Manganese Ferrite Nanoparticles. International Journal of Engineering Research and Applications. ISSN : 2248-9622, Vol. 4, Issue 8( Version 2), August 2014, pp.14-17

Zen, N. A, Widanarto, W, Cahyanto, W. T. 2014. Karakterisasi Struktur dan Sifat Magnetik Manganese Ferrite sebagai Bahan Magnet Permanen Isotropik. Program Studi Fisika, Universitas Jenderal Soedirman.

Jayalakshmi, M. 2008. Simple Capasitor To Supercacitors. Int. J. Electrochem Sci. Vol3. Hal1196- 1217

Karthikeyan, K. 2009. Synthesis And Characterization Of Znco2o4 Nanomaterial For Symmetric Supercapacitor Applications. Ionics.

Karokaro, A., Suharpiyu, M. Febri., Mujamillah., E. Yulianti., S. Purwanto., Ridwan., Sudirman. 2002. Aplikasi Resin Poliester Dan Epoksi Dalam Pengembangan Rigid Bonded Agnet. Jurnal Sains Materi Indonesia Vol .3 No.2. Tangerang: Puslitbang Iptek Bahan (P3IB) BATAN

Burke, A. 2000. Ulltracapacitors: why, how, and where is the technology. Journal of Power Sources 91 (1): 37-50

Sahay, Kuldeep. 2009. Supercapacitor Energy Storage System For Power Quality Improvement. J. Electrical systems Vol. X Hal 1-8

Ganesh, V. 2006. New Symmetric and Asymetric Supercapacitors Besade On High Surface Area Porous Nickel danActivated Carbon. PowerSources. Vol.158 Hal 1-43.

Rahmi., Ramli, dan Darvina, Yenni. 2018. Analisis Sifat Listrik Nanokomposit Fe3O4/PVDF yang Disintesis Dengan Metode Sol-Gel Untuk Aplikasi Elektroda Baterai Litium Ion. Pillar Of Physics, Vol. 11 No. 2, Oktober 2018, 73-80.

Vegunopal. AP., Cespedes O., Russell. Controling Dielectric and Magnetic Properties of PVDF Magnetite Nanocompsit Fiber Web. Internasional Journal of Polymer Sains Volume 2014, artikel id 102946. 2014

Naat, Jhonson Nune, dkk. 2014. Pengaruh Kecepatan Putar Deposisi Terhadap Struktur Kristal Ketebalan Dan Morfologi Lapisan Tipis Timbal Zirkonat Titanat (Pzt) Dengan Metode SpinCoater. Chimica et Natura Acta Vol.2 No.2, Agustus 2014:115-119

Murti, Fitria., Ramli., dan Darvina, Yeni. 2017. Analisis Sifat Listrik Lapisan tipis Fe3O4 yang dipreparasi dari Pasir Besi Pantai Tiram Kabupaten Padang Pariaman Sumatera Barat dengan Metoda Sol-Gel Spin Coating. Pillar Of Physics, Vol.10. Oktober 2017, 31-38.

Mafahir, Lim Abdul. 2005. Pengaruh Suhu Substrat Terhadap SifatListrik Bahan Semikonduktor Lapisan Tipis Pbs, Pbse, Pbte Hasil Preparasi Dengan Teknik Vakum Evaporasi. Skripsi. Yogyakarta: Universitas Negeri Yogyakarta.

Rianto, D., Yulfriska, N., Murti, F., Hidayati, H., Ramli, R. 2018. Analysis of Crystal Structure of Fe3o4 Thin Films Based On Iron Sand Growth by Spin Coating Method. ICOMSET. IOP Conf. Series : Materials Science and Engineering 335 012012. doi:10. 1088/1757-899x/335/1/012012.

Hidayat, S. A., Rokhmat, M, Qurthobi, A. 2014 Pengaruh Suhu dan Kecepatan Putar Spin Coating Terhadap Kinerja Sel Surya Organik Berbahan Dasar TiO2. Bandung : Universitas Telkom.

Ramli., Jonuarti, R., Hartono, A. 2017. Analisis Struktur Nano dari Lapisan Tipis cobalt Ferrite Yang Dipreparasi dengan Metode Sputtering. Eksakta Vol.18 No. 1

Aldy Satria Hidayat, dkk. 2014. Pengaruh Suhu dan Kecepatan Putar Spin Coating Terhadap Kinerja Sel Surya Organik Berbahan Dasar TiO2. e-Proceeding of Engineering : Vol. 1, No.1 Desember 2014; 497-510.

Eken, A. E., Ozenbas, M. 2009. Characterization of nanostructured magnetite thinfilms produced by sol–gel processing. Journal Sol-Gel Sci Technol. 50:321–327.

Maria, dkk. 2010. Pengaruh Cara Pengeringan Oven dan Microwave Terhadap perolehan Kadar Senyawa Fenolat dan Daya Anti Oksidan dari daun Jambu Biji (Psidifolium). Jurnal Farmasi Higen. Vol; 2. No.1. 2010; 19-26.

Askia, Ratih., Ramli., Gusnedi dan Ratnawulan. 2019. Pengaruh Komposisi Terhadap Struktur Mikro dari Nanokomposit MnFe2O4/PVDF Yang Disintesis Dengan Metode Sol-Gel Spin Coating. Pillar Of Physics, Vol. 12 No. 12, Desember 2019.

Suyoso. (2003). Listrik Magnet. Yogyakarta: FMIPA UNY.




DOI: http://dx.doi.org/10.24036/8156171074