EFEK ATOM SKANDIUM TERHADAP STRUKTURAL DAN SIFAT ELEKTRONIK SENYAWA KALSIUM BOROHIDRIDDIAMONIA SEBAGAI PENGHASIL HIDROGEN : STUDI BERDASARKAN PRINSIP UTAMA AB INITIO DFT

Study of structure and electronic properties of solid Ca(BH4)2�2NH3 as a hydrogen production material, including doping effect with scandium metal has been performed. The energy, density of states, and band structure of solid Ca(BH4)2�2NH3 have calculated within framework of density functional t...

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Main Authors: , Muhammad Arsyik Kurniawan S., , Prof. Dr.rer.nat. Ria Armunanto., M.Si
格式: Thesis
出版: [Yogyakarta] : Universitas Gadjah Mada 2014
主题:
ETD
_version_ 1826048428930498560
author , Muhammad Arsyik Kurniawan S.
, Prof. Dr.rer.nat. Ria Armunanto., M.Si
author_facet , Muhammad Arsyik Kurniawan S.
, Prof. Dr.rer.nat. Ria Armunanto., M.Si
author_sort , Muhammad Arsyik Kurniawan S.
collection UGM
description Study of structure and electronic properties of solid Ca(BH4)2�2NH3 as a hydrogen production material, including doping effect with scandium metal has been performed. The energy, density of states, and band structure of solid Ca(BH4)2�2NH3 have calculated within framework of density functional theory (DFT) by the projector augmented-wave method, and generalized gradient approximation for the exchange-correlation energy functional. Structure analysis and electronic properties of Ca(BH4)2�2NH3 indicated that the source of hydrogen molecule was verified by interaction from hydrogen (Hδ-) from BH� � and hydrogen (Hδ+) from NH3 in dihydrogen bonding site B� H���H�N. The removal energy of hydrogen molecule is 2.30 eV while removal energy of NH3 molecule is 1.52 eV, dissociation of NH3 molecule more dominant than H2. The result of scandium doping give the removal energy of hydrogen molecule is 14 � 22% lower than NH3 removal energy, in this case, removal H2 molecule more dominant than NH3 molecule.
first_indexed 2024-03-13T23:29:17Z
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institution Universiti Gadjah Mada
last_indexed 2024-03-13T23:29:17Z
publishDate 2014
publisher [Yogyakarta] : Universitas Gadjah Mada
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spelling oai:generic.eprints.org:1304722016-03-04T08:02:28Z https://repository.ugm.ac.id/130472/ EFEK ATOM SKANDIUM TERHADAP STRUKTURAL DAN SIFAT ELEKTRONIK SENYAWA KALSIUM BOROHIDRIDDIAMONIA SEBAGAI PENGHASIL HIDROGEN : STUDI BERDASARKAN PRINSIP UTAMA AB INITIO DFT , Muhammad Arsyik Kurniawan S. , Prof. Dr.rer.nat. Ria Armunanto., M.Si ETD Study of structure and electronic properties of solid Ca(BH4)2�2NH3 as a hydrogen production material, including doping effect with scandium metal has been performed. The energy, density of states, and band structure of solid Ca(BH4)2�2NH3 have calculated within framework of density functional theory (DFT) by the projector augmented-wave method, and generalized gradient approximation for the exchange-correlation energy functional. Structure analysis and electronic properties of Ca(BH4)2�2NH3 indicated that the source of hydrogen molecule was verified by interaction from hydrogen (Hδ-) from BH� � and hydrogen (Hδ+) from NH3 in dihydrogen bonding site B� H���H�N. The removal energy of hydrogen molecule is 2.30 eV while removal energy of NH3 molecule is 1.52 eV, dissociation of NH3 molecule more dominant than H2. The result of scandium doping give the removal energy of hydrogen molecule is 14 � 22% lower than NH3 removal energy, in this case, removal H2 molecule more dominant than NH3 molecule. [Yogyakarta] : Universitas Gadjah Mada 2014 Thesis NonPeerReviewed , Muhammad Arsyik Kurniawan S. and , Prof. Dr.rer.nat. Ria Armunanto., M.Si (2014) EFEK ATOM SKANDIUM TERHADAP STRUKTURAL DAN SIFAT ELEKTRONIK SENYAWA KALSIUM BOROHIDRIDDIAMONIA SEBAGAI PENGHASIL HIDROGEN : STUDI BERDASARKAN PRINSIP UTAMA AB INITIO DFT. UNSPECIFIED thesis, UNSPECIFIED. http://etd.ugm.ac.id/index.php?mod=penelitian_detail&sub=PenelitianDetail&act=view&typ=html&buku_id=70894
spellingShingle ETD
, Muhammad Arsyik Kurniawan S.
, Prof. Dr.rer.nat. Ria Armunanto., M.Si
EFEK ATOM SKANDIUM TERHADAP STRUKTURAL DAN SIFAT ELEKTRONIK SENYAWA KALSIUM BOROHIDRIDDIAMONIA SEBAGAI PENGHASIL HIDROGEN : STUDI BERDASARKAN PRINSIP UTAMA AB INITIO DFT
title EFEK ATOM SKANDIUM TERHADAP STRUKTURAL DAN SIFAT ELEKTRONIK SENYAWA KALSIUM BOROHIDRIDDIAMONIA SEBAGAI PENGHASIL HIDROGEN : STUDI BERDASARKAN PRINSIP UTAMA AB INITIO DFT
title_full EFEK ATOM SKANDIUM TERHADAP STRUKTURAL DAN SIFAT ELEKTRONIK SENYAWA KALSIUM BOROHIDRIDDIAMONIA SEBAGAI PENGHASIL HIDROGEN : STUDI BERDASARKAN PRINSIP UTAMA AB INITIO DFT
title_fullStr EFEK ATOM SKANDIUM TERHADAP STRUKTURAL DAN SIFAT ELEKTRONIK SENYAWA KALSIUM BOROHIDRIDDIAMONIA SEBAGAI PENGHASIL HIDROGEN : STUDI BERDASARKAN PRINSIP UTAMA AB INITIO DFT
title_full_unstemmed EFEK ATOM SKANDIUM TERHADAP STRUKTURAL DAN SIFAT ELEKTRONIK SENYAWA KALSIUM BOROHIDRIDDIAMONIA SEBAGAI PENGHASIL HIDROGEN : STUDI BERDASARKAN PRINSIP UTAMA AB INITIO DFT
title_short EFEK ATOM SKANDIUM TERHADAP STRUKTURAL DAN SIFAT ELEKTRONIK SENYAWA KALSIUM BOROHIDRIDDIAMONIA SEBAGAI PENGHASIL HIDROGEN : STUDI BERDASARKAN PRINSIP UTAMA AB INITIO DFT
title_sort efek atom skandium terhadap struktural dan sifat elektronik senyawa kalsium borohidriddiamonia sebagai penghasil hidrogen studi berdasarkan prinsip utama ab initio dft
topic ETD
work_keys_str_mv AT muhammadarsyikkurniawans efekatomskandiumterhadapstrukturaldansifatelektroniksenyawakalsiumborohidriddiamoniasebagaipenghasilhidrogenstudiberdasarkanprinsiputamaabinitiodft
AT profdrrernatriaarmunantomsi efekatomskandiumterhadapstrukturaldansifatelektroniksenyawakalsiumborohidriddiamoniasebagaipenghasilhidrogenstudiberdasarkanprinsiputamaabinitiodft