PREPARATION OF CHITOSAN-GOLD NANOPARTICLES: PART 1 (OF 2). EFFECT OF REDUCING TECHNIQUE

https://doi.org/10.22146/ijc.21621

Adlim Adlim(1*), Mohamad Abu Bakar(2)

(1) Jurusan Kimia FKIP Universitas Syiah Kuala Darussalam, Banda Aceh, 23111
(2) School of Chemical Sciences, Universiti Sains Malaysia, 11800 Minden, Penang
(*) Corresponding Author

Abstract


Chitosan-stabilized gold nanoparticles were synthesized in aqueous formic acid, citric, or acetic acid with and without chitosan as the stabilizer. Refluxing in methanol, addition of hydrazine or sodium borohydride, photo-irradiation were employed as the reducing agents & reduction technique of gold ions. Dispersed particles of chitosan-stabilized gold were obtained in aqueous acetic acid-methanol solution.  The chitosan-stabilized gold colloids (chi-Au) were dispersed and the particle size were in range of 9-30 nm, some of which were crystalline with various shapes.  Chi-Au prepared with hydrazine as the reducing agent resulted in large and aggregated particles. The finest and dispersed chi-Au particles were obtained if NaBH4 was used as the reducing agent and the diameters could be controlled within 2.2-2.3 nm.


Keywords


Gold nanoparticles; chitosan; size control

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References

[1] Kumar, M. N.V. R., 2000, React. Funct. Polym., 47, 1-27.

[2] Huang, H and Yang, X., 2003, Colloids Surf. A: Physicochem. Eng. Aspect, 226, 77-82.

[3] Lu, H., Wang, H and Liu, H., 1993, Acta Polymerica Sinica, 2, 100-104 (Chinese).

[4] Summ, B.D and Ivanova, N.I., 2000, Russ. Chem. Rev. 69, 911-923.

[5] Himmelhaus, M and Takei, H., 2000, Sens. Actuators B., 63, 24-30.

[6] Haruta, M and Daté, M., 2001, Appl. Catal. A: General, 222, 427-437.

[7] Porta, F., Prati, L., Rossi, M., Coluccia, S and Martra, G., 2000, Catal. Today, 61, 165-172.

[8] Luo, J., Maye, M. M., Lou, Y., Han, L., Hepel, M and Zhong, C. J., 2002, Catal. Today, 77, 127-138.

[9] Biella, S., Castiglioni, G. L., Fumagalli, C., Prati, L and Rossi, M., 2002, Catal. Today, 72, 43-49.

[10] Esumi, K., Satoh, K and Torigoe, K., 2001, Langmuir, 17, 6860-6864.

[11] Chen, S and Kimura, K., 1999, Langmuir, 15, 1075-1079.

[12] Guo, O., Sun, X., Chen, Y and Palmer, R. E., 2002, Surf Sci. 497, 269-274.

[13] Jana, N.R., Gearheart, L and Murphy, C.J., 2001, Langmuir, 17, 6782-6786.

[14] Zhou, Q. F., Bao, J. C and Xu, Z., 2002, Mater. Chem., 12, 384-387.

[15] Sun, Y and Xia, Y., 2002, Science 298, 2176-2179.

[16] Mougin, K., Haidara, H and Castelein, G., 2001, Colloid and Surf. A: Physicochem. Eng. Aspects, 193, 231-237

[17] Carotenuto, G and Nicolais, L., 2003, J. Mater. Chem., 13, 1038-1041.

[18] Sau, T. K., Pal, A., Jana, N. R., Wang, Z. L and Pal, T., 2001, J. Nanopart. Res, 3, 257-261.

[19] Huang, H and Yang, X., 2004, Carbohydr. Res., 339, 2627-2631.

[20] Liz-Marzan, L.M., 2004, Mater. Today, 7, 26-31.

[21] Magnusson, M.H., Deppert, K., Malm, J.O., Bowin, J.O and Samuelson, L., 1999, NanoStruct. Mater. 12, 45-48.

[22] Templeton, A.C., Chen, S., Gross, S.M and Murray, R.W. (1999). Langmuir, 15, 66-76.

[23] Brust, M and Kiely, C.J., 2002, Colloids Surf. A: Physicochem. Eng. Aspects, 202, 175-186.

[24] Roberts, G.A.F. (Ed.), 1992, Chitin Chemistry, Hongkong: MacMillan.

[25] Duff, D. G., Baiker, A and Gameson, I., 1993, Langmuir, 9, 2310-2317.

[26] Fieser, F and Fieser, M., 1967, Reagents for Organic Synthesis, John Wiley and Sons, New York.

[27] Meyer, A.B.R and Mark, J. E., 1998, Eur. Polym. J., 34, 103-108.



DOI: https://doi.org/10.22146/ijc.21621

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