Some Aspects of Particuology in Heterogeneous Catalysts

Authors

  • Rasidah Razali Ibnu Sina Institute for Fundamental Science Studies, Universiti Teknologi Malaysia, 81310 UTM Johor Bahru, Johor, Malaysia
  • Ho Chin Siong Low Carbon Asia Research Center, Faculty of Built Environment, Universiti Teknologi Malaysia, 81310 UTM Johor Bahru, Johor, Malaysia
  • Lai Sin Yuan Ibnu Sina Institute for Fundamental Science Studies, Universiti Teknologi Malaysia, 81310 UTM Johor Bahru, Johor, Malaysia
  • Sheela Chandren Ibnu Sina Institute for Fundamental Science Studies, Universiti Teknologi Malaysia, 81310 UTM Johor Bahru, Johor, Malaysia
  • Hadi Nur Department of Physics, Institut Sains dan Teknologi Nasional, Jl. Moh. Kahfi II, Jagakarsa, Jakarta Selatan 12640, Indonesia

DOI:

https://doi.org/10.11113/jt.v69.3213

Keywords:

Particulate materials, heterogeneous catalytic system, synthesis of titanium dioxide under magnetic field, liquid-gas boundary catalyst, bifunctional catalyst, photocatalyst, chiral catalyst

Abstract

The design and synthesis of particulate materials for new catalyst systems with novel properties remain a big challenge today. Here an attempt has been made to synthesize particulate materials for several heterogeneous catalytic systems, which contain examples from our recent research projects in this area. The particulate catalysts have been designed for single centre catalyst, phase-boundary catalyst, bifunctional catalyst, photocatalyst and chiral catalyst. In our current research, the synthesis of well-aligned titanium dioxide catalyst with very high length to the diameter ratio has also been demonstrated for the first time by sol-gel method under magnetic field with surfactant as the structure aligning agent. 

References

Particulogy. 2012. Retrieved October 21, 2012, from http://www.journals.elsevier.com/ particuology/.

H. Nur. 2006. Heterogenous Chemocatalysis: Catalysis by Chemical Design. Ibnu Sina Institute for Fundamental Science Studies.

H. Nur. 2007. Akta Kimia Indonesia. 3: 1–10.

H. Nur. 2011. Better (and happy) Life Through Heterogeneous Catalysis Research. Penerbit UTM Press.

N. Attan, H. Nur, J. Efendi, H. O. Lintang, S. L. Lee, I. Sumpono. 2012. Chem. Lett. Accepted for publication.

U. K. Nizar, J. Efendi, L. Yuliati, H. Nur. 2012. J. Colloid Interf. Sci. Submitted for publication.

H. Nur, S. Ikeda and B. Ohtani, 2000. Chem. Commun. 2235–2235.

H. Nur, S. Ikeda, B. Ohtani. 2001. J. Catal. 204: 402–408.

S. Ikeda, H. Nur, T. Sawadaishi, K. Ijiro, M. Shimomura, B. Ohtani. 2001. Langmuir. 17: 7976–7979.

H. Nur, S. Ikeda, B. Ohtani. 2004. React. Kinet. Catal. Lett. 82: 255–261.

H. Nur, S. Ikeda, B. Ohtani. 2004. J. Braz. Chem. Soc. 15: 719–724.

Nur, H., N. Y. Hau, M. N. M. Muhid, H. Hamdan. 2004. Phys. J. IPS. A7: 0218.

H. Nur, A. F. N. A. Manan, L. K. Wei, M. N. M. Muhid, H. Hamdan. 2005. J. Hazard. Mater. 117: 35–40

Hau, N. Y., I. I. Misnon, H. Nur, M. N. M. Muhid, H. Hamdan. 2007. J. Fluorine Chem. 128: 12–16.

H. Nur, I. I. Misnon, and H. Hamdan. 2009. Catal. Lett. 130: 161-168.

H. Nur, N. Y. Hau, I. I. Misnon, H. Hamdan, M. N. M. Muhid. 2006. Mater. Lett. 60: 2274–2277.

S. Ikeda, H. Nur, P. Wu, T. Tatsumi, B. Ohtani. 2003. Stud. Surf. Sci. Catal. 145: 251–254.

H. Nur, S. Ikeda, B. Ohtani. 2012. ITB J. Sci. 44A: 153–163.

N. H. M. Ran, L. Yuliati, S. L. Lee, T. M. I. Mahlia, H. Nur. 2012. J. Colloid Interf. Sci. Submitted for publication.

S. Lubis, L. Yuliati, S. L. Lee, I. Sumpono, H. Nur. 2012. Chem. Eng. J. 209: 486–493.

D. Prasetyoko, C. E. Royani, H. Fansuri, Z. Ramli, H. Nur. 2010. Indonesian J. Chem. 10: 149–155.

D. Prasetyoko, H. Fansuri, Z. Ramli, S. Endud, H. Nur. 2009. Catal. Lett. 128: 177–182.

D. Prasetyoko, Z. Ramli, S. Endud, H. Nur. 2008. Adv. Mater. Sci. Eng. Article ID 345895, 12 pages, doi:10.1155/2008/345895.

D. Prasetyoko, Z. Ramli, S. Endud, H. Nur. 2005. J. Mol. Catal. A-Chem. 241: 118–125.

Prasetyoko, D., Z. Ramli, S. Endud, H. Nur. 2005. Akta Kimia Indonesia. 1: 11–16.

D. Prasetyoko, Z. Ramli, S. Endud, H. Nur. 2005. React. Kinet. Catal. Lett. 86: 83–89.

Prasetyoko, D., Z. Ramli, S. Endud, H. Nur. 2005. Mater. Chem. Phys. 93: 443–449.

D. Prasetyoko, Z. Ramli, S. Endud, H. Nur. 2005. Malaysian J. Chem. 7: 11–18.

H. Nur, I. I. Misnon, L. K. Wei. 2007. Intern. J. Photoenergy. Article ID 98548, 6 pages, doi:10.1155/2007/98548.

H. Nur, Z. Ramli, J. Efendi, A. N. A. Rahman, S. Chandren, L. S. Yuan. 2011. Catal. Comm. 12: 822–825.

H. Nur, L. K. Wei, S. Endud. 2009. Reac. Kinet. Catal. Lett. 98: 157-164.

H. Nur, L. K. Wei. 2011. Amino Acids Functionalized Chiral Catalyst. Lambert Academic Publishing, Saarbrücken, Germany.

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Published

2014-07-02

How to Cite

Some Aspects of Particuology in Heterogeneous Catalysts. (2014). Jurnal Teknologi, 69(5). https://doi.org/10.11113/jt.v69.3213