NanoBlog

A blog about nanotech

Publikasi

Peer-reviewed journals:

    1. W. Widiyastuti, Darmawan Hidayat, Agus Purwanto, Ferry Iskandar, Sugeng Winardi, Kikuo Okuyama, “Particle Dynamics Simulation of Nanoparticle Formation in a Flame Reactor using a Polydispersed Submicron-Sized Solid Precursor, Chem. Eng. J.,158, 2010, pp. 362-367
    2. Darmawan Hidayat, Agus Purwanto, Wei-Ning Wang, Kikuo Okuyama, Preparation of Size Controlled Tungsten Oxide Nanoparticles and Evaluation of Their Adsorption Performance, Mater. Res. Bul., 45, Issue 2, February 2010, Pages 165-173
    3. I Made Joni, Agus Purwanto, Ferry Iskandar, Manabu Hazata, and Kikuo Okuyama, Intense UV-light absorption of ZnO nanoparticles prepared using a pulse combustion-spray pyrolysis method, Chem. Eng. J., 155, Issues 1-2, 1 December 2009, Pages 433-441
    4. Samsudin Affandi, Heru Setyawan, Sugeng Winardi, and Agus Purwanto, A Facile Method for Production of High-Purity Silica Xerogels from Bagasse Ash, Adv. Powder Technol., 20, Issue 5, September 2009, Pages 468-472
    5. Agus Purwanto, Hendri Widiyandari, Darmawan Hidayat, Ferry Iskandar, and Kikuo Okuyama, Facile Method for the Fabrication of Vertically Aligned ITO Nanopillars with Excellent Properties. Chem. Mater., 21, pp 4087-4089, 2009.
    6. I Made Joni, Agus Purwanto, Ferry Iskandar, and Kikuo Okuyama, Dispersion stability enhancement of titania nanoparticles in organic solvent using a bead mill process, Ind. Eng. Chem. Res., 48, pp. 6916-6922, 2009.
    7. Soon-Gil Kim, Yoshitake Terashi, Agus Purwanto, and Kikuo Okuyama, Synthesis and Film Deposition of Ni Nanoparticles for Base Metal Electrode Applications, Colloids Surf., A, 337, pp. 96-101, 2009.
    8. Takashi Ogi, Darmawan Hidayat, Ferry Iskandar, Agus Purwanto and Kikuo Okuyama, Direct synthesis of highly crystalline transparent conducting oxide nanoparticles by low pressure spray pyrolysis, Adv. Powder Technol., 20, pp. 203-209, 2009.
    9. W. Widiyastuti, Agus Purwanto, Wei-Ning Wang, Ferry Iskandar, Heru Setyawan and Kikuo Okuyama, Nanoparticles Formation Through Solid-Fed Flame Synthesis: Experiment and Modeling, AIChE J., 55 (4), pp. 885-895, 2009.
    10. Agus Purwanto, Darmawan Hidayat, Yoshitake Terashi, and Kikuo Okuyama, Synthesis of Monophasic CaxBa(1-x)TiO3 Nanoparticles with High Ca content (x > 23 %) and Their Photoluminescence Properties, Chem. Mater., 20, pp. 7440-7446, 2008.
    11. Yoshitake Terashi, Agus Purwanto, Wei-Ning Wang, Ferry Iskandar and Kikuo Okuyama, Role of Urea Addition in the Preparation of Tetragonal BaTiO3 Nanoparticles using Flame-Assisted Spray Pyrolysis, J. Eur. Ceram. Soc., 28, pp. 2570-2580, 2008.
    12. Agus Purwanto, Wei-Ning Wang, Takashi Ogi, I. Wuled Lenggoro, Eishi Tanabe and Kikuo Okuyama, High Luminance YAG:Ce Nanoparticles Fabricated from Urea Added Aqueous Precursor by Flame Process, J. Alloys Compd., 463, pp. 350-357, 2008.
    13. Wei-Ning Wang, Agus Purwanto, I. Wuled Lenggoro, Kikuo Okuyama, Hankwon Chang, and Hee Dong Jang, Investigation on the Correlations between Droplet and Particle Size Distribution in Ultrasonic Spray Pyrolysis, Ind. Eng. Chem. Res., 47 (5), pp. 1650-1659, 2008.
    14. W. Widiyastuti, Wei-Ning Wang, Agus Purwanto, I. Wuled Lenggoro, and Kikuo Okuyama, A Pulse Combustion-Spray Pyrolysis Process for the Preparation of Nano- and Submicron-Sized Oxide Particles, J. Am. Ceram. Soc., 90 (12), pp. 3779-3785, 2007.
    15. Agus Purwanto, Wei-Ning Wang, I. Wuled Lenggoro and Kikuo Okuyama, Formation of BaTiO3 Nanoparticles from an Aqueous Precursor by Flame-Assisted Spray Pyrolysis, J. Eur. Ceram. Soc., 27,16, pp. 4489-4497, 2007.
    16. Agus Purwanto, Wei-Ning Wang, I. Wuled Lenggoro, Kikuo Okuyama, Formation and Luminescence Enhancement of Agglomerate-Free YAG:Ce3+J. Electrochem. Soc., 154, 3, pp. J91-J96, 2007.
    17. Agus Purwanto, I. Wuled Lenggoro, Hankwon Chang, and Kikuo Okuyama, Preparation of Submicron and Nanometer-Sized Particles of Y2O3:Eu3+ by Flame Spray Pyrolysis using Ultrasonic and Two-Fluid Atomizers, J. Chem. Eng. Jpn., 39, 1, pp. 68-76, 2006.

      Review:

      1. Kikuo Okuyama, Agus Purwanto,“Preparation of Nanoparticles by Flame Assisted Spray Pyrolyisis (Review)”, Materials Integration, 21, 7, pp 50-57, 2008 (in Japanese/ abstract English)

      Other Articles:

      1. Agus Purwanto, Direct Preparation of Metal Oxide Nanoparticles by Flame Assisted Spray Pyrolysis from Aqueous Solutions, J. Soc. Powder. Technol., Japan, 45, 658, 2008 (in Japanese)

      Book Chapter:

      1. Kikuo Okuyama, Wei-Ning Wang, and Agus Purwanto, “Spray Pyrolysis Method”, in Nanophosphor Development and Their Applications, Ed. by T. Isobe, CMC Publishing Co., Ltd., Tokyo, Japan, 2007 (in Japanese).

      International / national conferences:

      1. Kikuo Okuyama, Fery Iskandar, Agus Purwanto, “Importance of surface and interface in nanoparticle technology”, Japan-Korea Symposium on Material and Interface, Sapporo, Japan, Nov. 5-7, 2008 (keynote lecture)
      2. Agus Purwanto, Hendri Widiyandari, Darmawan Hidayat, Kikuo Okuyama, “Fabrication of metal oxide nanoparticles from aqueous solutions by flame assisted spray pyrolysis”, International aerosol symposium 2008 in conjunction with 25th annual meeting of Japan Association of Aerosol Science and Technology, Kanazawa, Japan, C12, Aug 20-22, 2008.
      3. W. Widiyastuti, Agus Purwanto, Ferry Iskandar, Kikuo Okuyama, “Modeling and experimental study of solid-fed aerosol synthesis for nanoparticle production”, International aerosol symposium 2008 in conjunction with 25th annual meeting of Japan Association of Aerosol Science and Technology, Kanazawa, Japan, C08, Aug 20-22, 2008.
      4. I. Wuled Lenggoro, Agus Purwanto, Widiyastuti, Wei-Ning Wang, and Kikuo Okuyama, “Morphology and size control in multi-component particle formation by spray methods”, 16th Nisshin Engineering Particle Technology International Symposium (NEPTIS-16) , Sendai, Japan, Dec. 2-4, 2007.
      5. Agus Purwanto, Wei-Ning Wang, I. Wuled Lenggoro and Kikuo Okuyama, Direct Preparation and Characterization of BaTiO3 Nanoparticles from Flame Assisted Spray Pyrolysis, The 3rd Asian Particle Technology Symposium, Beijing China, P9, Sept. 3-5, 2007.
      6. W. Widiyastuti, Wei-Ning Wang, Agus Purwanto, I. Wuled Lenggoro, Ferry Iskandar, and Kikuo Okuyama, Comprehensive Analysis of Particle Formation from Poly-Dispersed Droplets by Spray Pyrolysis Method: Experiment and Simulation, The 3rd Asian Particle Technology Symposium, Beijing China, B12, Sept. 3-5, 2007.
      7. Wei-Ning Wang, W. Widiyastuti, Takashi Ogi, Agus Purwanto, I. Wuled Lenggoro, and Kikuo Okuyama, Effects of Crystallite/Particle Size on Luminescence Properties of Submicron Spray Pyrolyzed Phosphor Powders, The 3rd Asian Particle Technology Symposium, Beijing China, A11, Sept. 3-5, 2007.
      8. Agus Purwanto, Takashi Ozaki, I. Wuled Lenggoro and Kikuo Okuyama, Formation of Non-Aggregated and high-Crystalline Fine Particles in Flame-Spray Process, 23th Symposium on Aerosol Science & Technology, Fukuoka, Japan, G10, pp 253-254 , Aug. 8-10, 2006.
      9. Takashi Ozaki, Agus Purwanto, I. Wuled Lenggoro and Kikuo Okuyama, Synthesis of Luminescent Oxide Nanoparticles by Flame-Assisted Spray Method, 2005 Autumn Symposium of Society of Powder Technology, Osaka, Japan, Oct. 18-21, 2005.
      10. Agus Purwanto and Minta Yuwana, Modeling of Concrete Corrosion Under Aggressive Environment, Regional Symposium on Chemical Engineering (RSCE) in conjunction with 16th Symposium of Malaysian Chemical Engineers (SOMChE), Kuala Lumpur, Malaysia, Oct. 28-30, 2002.

      National Journals:

      1. Agus Purwanto, Application of Electrochemical Polarization Method for the Corrosion Measurement of Reinforced Steel in Concrete (Aplikasi metode polarisasi elektrokimia pada pengukuran korosi baja tulangan beton), Gema Teknik, 6, 1, pp 98-102, 2003 (in Indonesian).
      2. Agus Purwanto, Reinforced Steel Corrosion in Concrete Structure and Its Protection Using Cement Additives (Korosi Baja Tulangan Beton Serta Penggunaan Aditif Untuk Proteksinya), Gema Teknik, 6, 1, pp 53-58, 2003 (in Indonesian).
      3. Agus Purwanto, Arif Jumari, and Eko Lestiawan, Simulation of Matsuoka Model for Reinforced Steel Corrosion in Concrete (Kajian Matsuoka Model pada Korosi Baja Tulangan Beton), Ekuilibrium, 2, 1, pp 46-56, 2003 (in Indonesian).
      4. Agus Purwanto, Modeling of reinforced steel concrete corrosion in aggressive environment (Modeling korosi baja tulangan beton pada lingkungan yang agresif), Ekuilibrium, 1, 1, pp 32-38 (2002) (in Indonesian).

      10 Comments »

      1. wahh…. pak agus keren banget… jadi iritabilita nih..

        Comment by Puji Rahmawati | April 10, 2009 | Reply

      2. Terima kasih atas apresiasinya. Mudah2an bisa menjadi lebih baik lagi.

        Comment by aguspur | May 10, 2009 | Reply

      3. bapak hebat.,,
        bagaimana supaya bisa dapat beasiswa ke jepang y pak??
        sepertinya sulit sekali.,,

        Comment by Monika | July 29, 2009 | Reply

      4. Terimakasih. Untuk informasi beasiswa ke jepang bisa di lihat di sini.http://www.jasso.go.jp/study_j/scholarships_e.html

        Comment by aguspur | July 30, 2009 | Reply

      5. Pak agus…..wah TOP BGT

        Comment by Hagung Haruno | August 11, 2009 | Reply

      6. Terimakasih Mas Hagung. Sukses selalu untuk anda.

        Comment by aguspur | August 11, 2009 | Reply

      7. wah hebat benar indonesia punya pakar nano. tapi saya ingin mengetahui sejauhmana hasil karya bapak sudah diimplemetasikan secara riil, biar kita2 punya motivasi lebih tinggi

        Comment by PRAYITNO | February 15, 2010 | Reply

      8. wah hebat indonesia puny pakar nano, tapi saya juga ingin tahu sejauh mana karya bpk telah diimplementasikan sebagai teknologi terapan sehari-hari

        Comment by PRAYITNO | February 15, 2010 | Reply

        • Wah, masih jauh dari pakar mas. Mohon doanya saja supaya bisa berkontribusi untuk komunitas. Salam sukses

          Comment by aguspur | May 4, 2010 | Reply

      9. Mohon tanya pak, kalo mau menjual produk nanopartikel perak dimana yah pak.

        Comment by Apollo | May 27, 2010 | Reply


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