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dc.contributor.advisorSembiring, Kurnia
dc.contributor.advisorPriyono, Slamet
dc.contributor.authorNst, Adelyna Oktavia
dc.date.accessioned2019-05-07T01:49:11Z
dc.date.available2019-05-07T01:49:11Z
dc.date.issued2019
dc.identifier.urihttp://repositori.usu.ac.id/handle/123456789/13871
dc.description.abstractHospho-olivine material, LiMnPO4 was identified as a cathode material that promises for the next generation of Lithium-ion batteries and has been successfully synthesized by solid-state method with Li2Co3, 2MnO2, 2NH4H2PO4 as raw material. Effect of concentrations of initial precursors on calcination temperature (400 - 800 ° C) flowed with nitrogen. The purity and composition of the phase was verified by X-ray diffraction analysis (XRD), electron scanning microscopy (SEM), spectroscopy, Dispersive Energy X-ray Analysis (EDS) , Raman spectrum. General investigations show that there is a correlation between the precursor concentration, calcination temperature and sintering temperature which can be exploited for the design of the next generation lithium-ion battery.en_US
dc.description.abstractBahan hospho-olivine, LiMnPO4 diidentifikasi sebagai bahan katoda yang menjanjikan untuk generasi baterai Lithium-ion berikutnya dan telah berhasil disintesis dengan metode solid-state dengan Li2Co3, 2MnO2, 2NH4H2PO4 sebagai bahan baku. Pengaruh konsentrasi prekursor awal pada suhu kalsinasi (400 - 800 ° C) mengalir dengan nitrogen. Kemurnian dan komposisi fase diverifikasi oleh analisis difraksi sinar-X (XRD), mikroskop pemindaian elektron (SEM), spektroskopi, Energi X-ray Analisis Dispersif (EDS), spektrum Raman. Investigasi umum menunjukkan bahwa ada korelasi antara konsentrasi prekursor, suhu kalsinasi dan suhu sintering yang dapat dimanfaatkan untuk desain baterai lithium-ion generasi berikutnya.en_US
dc.language.isoiden_US
dc.publisherUniversitas Sumatera Utaraen_US
dc.subjectLithium-ionen_US
dc.subjectSynthesisen_US
dc.subjectOlivineen_US
dc.subjectCathodeen_US
dc.titlePembuatan dan Karakterisasi LiMnPO4 dengan Metode Solid State Reaction untuk Katoda Baterai Ion Lithiumen_US
dc.typeThesisen_US
dc.identifier.nimNIM167026014
dc.description.pages66 Halamanen_US
dc.description.typeTesis Magisteren_US


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