• Tidak ada hasil yang ditemukan

Arifin, R. 2016. Bisnis Hidroponik Kebun Sayur. Jakarta: PT. Agromedia Pustaka Askeland, D. R. 2016. The Science and Engineering of Material. North America:

Nelson Limited Publisher

Bambang, J. 2017. Teknik Perlakuan Limbah Gas Hasil Industri. Malang: UB Press.

Bianco, A. et al. (2013), All in The Graphene Family – A Recommended

Nomenclature for Two-Dimensional Carbon Materials, Carbon, 65, 1–6.

Bragg, W.L., 1913. The diffraction of short electromagnetic waves by a crystal.

Proc Camb Philos Soc

Breeze, E. 2004. Services ParsonsFuel Cell Handbook, seventh ed., 2004, pp. 4–

5.

Cao, Y., Xiao, L., Sushko, M.L. 2009. Nitrogen-doped carbon nanotube arrays with high electro catalytic activity for oxygen reduction. Science no: 323:

760.

Carter, G. F. 2011. Materials Science & Engineering. New York: ASN International

Chen, Z., Higgins, D., Yu, A., Zhang, L.,and Zhang, J. 2011. A review on non-precious metal electrocatalysts for PEM fuel cells. Energy Environ.

Science no: 4: 3167.

Choi, H. J., Jung, S. M., Chang, D. W. 2012. Graphene for Energy Conversion and Storage in Fuel Cells and Supercapasitors. Nano Energy, 4 :534.

Dadashi, S. 2015. Structural and Optical Properties of Pure Iron and Iron Oxide NanoparticlesPrepared via Pulsed Nd:YAG Laser Ablation in Liquid.

Procedia Materials Science. Iran

Dahn, J. R., Zheng, T., Liu, Y. dan Xue, J. S. 1995. Mechanisms for lithium insertion in carbonaceous materials. Science no. 270, 590–593.

Dinnebier, R.E., Billinge, S.J.L., 2008. Powder Diffraction, Theory and Practice.

The Royal Society of Chemistry. USA

Effendi, 2003. Telaah Kualitas Air Bagi Pengelolaan Sumber Daya dan Lingkungan Perairan. Jakarta: Konisius

Epp, J. 2014. Investigation of triaxial stress state in retained austenite during quenching of a lowalloy steel by in situ X-ray diffraction. Adv Mater Res 996.

Epp, J. 2016. X-ray diffraction (XRD) techniques for materials characterization.

Foundation Institute of Materials Science, Bremen, Germany Fery, 2012. Pola-pola Difraksi Sinar-X. Jakarta: Lumbung Pustaka Press Fitzpatrick, M.E., Lodini, A., 2003. Analysis of Residual Stress by Diffraction

Using Neutron and Synchrotron Radiation. London.

Friedrich, W., Knipping, P., von Laue, M., 2013. Introduction of X-ray diffraction. Ann Phys. 445.09 Germany.

Gazda, I. W., Twentieth Biennial Conf. on Carbon, University of Cal., Santa Barbara, CA (2001). Netherland.

Geim, A. K. dan Novoselov, K. S. 2007. The Rise of Graphen, Nature Materials, Nature Material. Paris: Nature publishing group science.

Guine, R., 2006. Diffraction Des Rayons X Sur Echantillons Polycristallins, Second Ed. Lavoisier, Paris.

Guinea, F., Katsnelson, M. I., Geim, A. K. 2009. Nat. Phys. 6: 30.

Hao, L., Moriyama, K., Gu, W., and Wang, C.Y. 2015. Modeling and

experimental validation of Pt Loading and Electrode Composition Effects in Pem Fuel Cells. J. Electrochem. Soc. 162: F854.

Hippo, E. J., Murdie, N., and Hyjaze, A., Carbon. Science Direct no: 27(5):689-695 (1989)

Holzer, G., Fritsch, M., Deutsch, J., Heartwig, M., Forster, E., 1997. X-ray emission lines of the 3d transition metals. Phys Rev A 56

Horne, M. 1995. Pocket Guide to Fluids, Electrolytes and Acid-Base Balance.

Second Edition. USA: Mosby Year Book, Inc

Hu, Y., et al.,2012. Graphenemicrotubings: controlled fabrication and site-specific functionalization, Nano Lett. 12.5879_5884.

Huang, J., Tao L., Changli, X., Lishan J., Qing, L., Kang W., Xin, W. 2018. Novel etched iron oxide mediated synthesis of 3D tremella-like mesoporous Fe/N co-doped graphene composite as a highly efficient platinum-free counter electrode in dye-sensitized solar cells. China: Elsevier

Kerry-Ann Adamson. 2008. Fuel Cell Industry Review, Fuel Cell Today and tech.

London

Li, Y., Tang, L., Li, J . 2009. Pt/graphenenanocomposite, Electrochem. Comm., 11, 846–849. China

Liu, H.; Liu, Y.; Zhu, D.. 2011. Chemical doping of graphene J. Mater. Chem., 21, 3335–3345. USA

Loo, A. H., Bonanni, A., Pumera, M. 2013. Introduction of Graphene. Nanoscale.

5: 4758. China

Mantell, C. L., 2016. Carbonand Graphite Handbook. Interscience Publishers.

New York

Marcano, D., Dreyer, D. R Kosynkin, D., Berlin, J., Sinitskii, A., Sun, Z., Slesarev, A., Alemany, L., Lu, W., Tour, J. 2010. Graphene and Aplications. ACS Nano. 4: 4806. New York

Marcinkoski, J., James, B.D., Kalinoski, J.A., Podolski, W., Benjamin, T.,

Kopasz, J., James, J.P., Kalinoski, B. J.,and Baum, K. 2010. Power Sources.

U. S Department Of Energy Hydrogen Program Annual Merit Review Proceedings. Washington DC

Massaro, A. J., 2009. Primary and Mating Ring Materials, Publ. of PureIndustries, St. Marys, PA. New York

Meyer, K., et al., 2007. The structure of suspended graphene sheets, Nature 446.

Australia

Nelson, S. 2000. Terapi Sari Air Laut. Jakarta: Niaga Swadaya.

Neto, F. Guinea, N.M.R. Peres, K.S. Novoselov, A.K. Geim. 2009. The electronic properties of graphene. Rev. Mod. Phys. 81.109.

Niu, J. Z., Chen, H.H. Hng, J. Ma, X. Chen, A. 2012. Leavening, Strategy to prepare reduced graphene oxide foams. Austria

Novoselov, K. S., Geim, A. K., Morozov, S. V., Jiang, D., Zhang,Y., Dubonos, S.

V., Grigorieva, I. V., Firsov, A. A. 2004. Graphene. Science. 306: 666.

China

Novoselov, K. S. Geim, A. K. Morozov, S. V. Jiang, D. Zhang, Y. Dubonos, S. V.

Grigorieva, I. V. Firsov, A. A. 2004. Electric Field Effect in Atomically Thin Carbon Films. China

Noyan, I.C., Cohen, J.B., 1987. Residual stress, measurement by diffraction and interpretation. Springer Verlag. Science. 306

Nur, K. 2010. Defisiensi Yodium, Besi dan Kecerdasan. Yogyakarta: Gadjah Mada University Press.

Nurmawati, dkk. 2007. Analisis Derajat Kristalinitas., ukuran dan bentuk partikel.

Bogor: IPB Press

Petek, T. 2015. Slurry Electrodes for Iron Plating in an All-Iron Flow Battery.

620-626. Elsevier: Chicago

P. Blake, P.D. Brimicombe, R.R. Nair, T.J. Booth, D. Jiang, F. Schedin, et al.,2008. Graphene-based liquid crystal device, Nano Lett. 8 1704_1708.

Qu, L., Liu, Y., Baek, J. B., and Dai, L. 2010. Nitrogen-doped graphene as efficient metal-free electrocatalyst for oxygen reduction in fuel cells, ACS Nano. Japan

Rahmandari, A., Ansori, Kusumawati. 2010. Pengolahan Grafit Tahap Pemanggangan. Yogyakarta: STTN-BATAN.

Ramachandran, T. 2016. Synthesis of Nanostructured Pirochromite Magnesium with Edd Shell Membran. Austria: Springer

Ratnasari, Dina, dkk 2009. X-Ray Diffraction (XRD). Surabaya: UIN Press Rohith, V., et al, 2016. Large Scale Synthesis and Formation mechanism of GNS.

India: Balakumar Press

Sakandarruidi, 2018. Geologi Mineral Logam Untuk Explorer Muda. Yogyakarta:

Gadjah Mada University Press.

Sania, dkk. 2014. Karakteristik dan Kandungan Mineral Pasir Pantai Lhok Mee.

Jakarta: UNY Press

Sankaran, M. 2009. Can Graphene be an Electrode Support for Pt. Germany: GE Company

Schwartz, L.H., Cohen, J.B., 2016. Diffraction from Materials. Springer Verlag, Berlin

Selvama, M., Saminathana, K.,Sivaa, P., Sahab, P., Rajendran, V.2016. Corrosion behavior of Mg/graphene composite in aqueous electrolyte. India: Elsevier Sharma, S. dan Pollet, B. G, 2012. A Review of Apllication of Carbon Nanotubes

for Lithium Ion Batteray Anode Material. Power Sources 214: 54-57 Shewchun, J. 1974. Minority Carrier Tunnel Diodes and Their Application to

Electron and Photo-Voltaic Energy Conversion. Canada: Perganom Press.

Siburian, RA.F. 2014. Support Material Effect For Pt Catalytic Activity at Cathode. University of Nusa Cendana. Kupang

Siburian, R., Nakamura, J. 2012. Formation Process of PtSubnano-Clusters on Graphene Nanosheets. Journal of Physical Chemistry C, 116, 22947-22953.

Siburian, R., Kondo, T., Nakamura J. 2013.Size Control to a Sub-Nanometer Scale in Platinum Catalysts on Graphene. Journal of Physical Chemistry C, 117, 3635-3645.

Siburian,R., Sihotang, H., Lumban Raja, S., Supeno, M., and Simanjuntak, C.

2017. New Route to Synthesize of Graphene Nano Sheets. Oriental Journal of Chemistry. 33 (6) (In Publisher)

Siburian, RA.F. 2014. Support Material Effect For Pt Catalytic Activity at Cathode. University of Nusa Cendana. Kupang

Silva, R.A., Hashimoto,T., Thompson,G.E., and Rangel, C.M. 2012.

Characterization of Adegradation for an open air cathode PEM fuel cell.

Int. J. Hydrogen Energy. 37: 7299.

Spieb, L., Teichert, G., Schwarzer, R., Behnken, H., Genzel, C., 2009. X-ray diffraction Models. Modern Second ed. Teubner Verlag, Wiesbaden.

Stoller, M. D., Park, S. Y., Zhu, J. An., Ruoff, R. S. 2008. Graphene based ultracapacitors, Nano Lett., 8, 3498–3502.

Sunarya, Y. 2007. Mengenal Logam dengan Mudah. Jakarta: PT. Media Pustaka.

Suprapto, W. 2017. Teknologi Pengecoran Logam. Malang: UB Press.

Wan,K., Long,G., Liu,M., Du,L., Liang, Z., and Tsiakaras, P. 2015.Nitrogen-doped ordered mesoporous carbon: synthesis and active sites for electrocatalysis of oxygen reduction reaction. Applied Catalysis B:

Environmental. 165: 566–571.

Wang, L., and Li, H. 2010. Maximum fuel economy-oriented power management design for a fuel cell vehicle using battery and ultracapacitor. IEEE Trans.

Ind. Appl. 46: 1011.

Williams, M. C. 2011. Fuel Cell Seminar. Electrochemical Society.

Zhao, L., Wang, Z., Li, J., Zhang, J., Sui, X., and Zhang, L. 2015.A newly-designed sandwich-structured graphene-Pt-graphene catalyst with improved electrocatalytic performance for fuel cells. Journal of Materials Chemistry A. 3 (10):5313–5320.

Zhu Yanwu, 2010. Graphene and Graphene Oxide: Synthesis and Properties and Application. Science: Tiongkok

Zhao, L., Wang, Z., Li, J., Zhang, J., Sui, X., and Zhang, L. 2015. A newly-designed sandwich-structured graphene-Pt-graphene catalyst with improved electrocatalytic performance for fuel cells. Journal of Materials Chemistry A. 3 (10):5313–5320. China

Zhu, Y. W., Murali, S., Cai, W. W., Li, X. S., Suk, J. W., Potts, J. R., Ruoff, R. S.

2010. Graphene Oxide. Adv. Mater. 22: 3906. Tiongkok

LAMPIRAN

Lampiran 1. Proses Sintesa Grafena

Grafit Pengadukan Grafit+H2SO4

Pengadukan Grafit+H2SO4+NaNO Pengadukan Grafit+H2SO4+NaNO3+ KMnO4

Pengadukan Grafit+H2SO4+NaNO3+ Pengadukan Grafit+H2SO4+NaNO3+ KMnO4+H2O2(p)+H2SO4 5% KMnO4+H2O2(p)+H2SO4 5%

Proses Sentrifugasi Hasil Sentrifugasi

Proses Ultrasonikasi Campuran dikeringan pada suhu 80oC

Sampel Grafena

Lampiran 2. Difraksi Sinar-X (X-Ray Diffraction)

Gambar Basic Process Grafit

Gambar Peak Data Grafit

Gambar Basic Process Grafena

Gambar Peak Data Grafena

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