Study of Optical and Structural Properties of Te/chlorophyll Nano-composites

Sumia Abbas Hussain (1) , Hawra Haider Mohsen (2) , Fatima Muhannad Saadi (3) , Heba Mahmoud Abdel Khader (4)
(1) University of Babylon, College of Science for Women, Department of Laser Physics, Iraq. , Iraq
(2) University of Babylon, College of Science for Women, Department of Laser Physics, Iraq. , Iraq
(3) University of Technology, Baghdad, Laser Science and Technology, Iraq. , Iraq
(4) University of Babylon, College of Science for Women, Department of Laser Physics, Iraq. , Iraq

Abstract

In this research tellurium particles Te were prepared(TeNps) nanoparticles using a 1064nm Pulsed Nd-YAG laser , the energy of 80mJ and the frequency of 6HZ and then the preparation of the nanocomposite Te / chlorophyll by adding chlorophyll to the tellurium nanoparticles. Then, the optical properties of each were examined TeNPs and Te/chlorophyll nanocomposites Using the uv_visibel device An absorption peak was obtained at the wavelength of 292 nm for tellurium nanoparticles And the occurrence of a blue shift for the element Te (Bulk) The blue shift indicates that the smaller nanoparticle values are present In the visible range, the chlorophyll formula helps the prepared nanocomposite to obtain a broad spectrum and a greater absorption of incoming solar energy, and thus obtain high solar energy.

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References

Noha Alawi Abu Bakr Al-Habashi, “What is Nanotechnology”, first edition, deposit number: 2707/1430, King Fahd National Library, Riyadh, Saudi Arabia, 2009.

Nanotechnology: From Chemical–Physical Applications to Nanomedicine-ncbi.nlm.nih.gov

John Amsley — Title: Nature’s Building Blocks: An A-Z Guide of the Elements (New Edition) — Publisher: Oxford University Press Writer: Prof. Dr. Nasrallah Muhammad Daraz

Professor of advanced nanomaterials chemistry and catalysis - Department of Physical Chemistry - National Research Center – Egypt. The light-dependent reactions".

Khan Academy (in English). Archived from the original on 2018-09-11.

Chloroplasts and photosynthesis, Biology Network, archived copy on June 6, 2012 on the Wayback Machine website.

Green, M.A., “Solar Cells”, Translated by Y.M. Hassan, University of Mosul, 1989.

Yasser Muhammad Salah El-Din Mahmoud Al-Maghrabi, “Nanotechnology and its impact on architecture in terms of construction methods and finishing materials,” Cairo University, (2013).

Perednis, Dainius. “Thin film deposition by spray pyrolysis and the application in solid oxide fuel cells.” Diss. ETH ZurIch, 2003.

Mohamed Sharif Al-Iskandarani, “Nanotechnology for a Better Tomorrow”, publications of the National Council for Culture, Arts and Letters, Dar Al-Ma’rifa World, Kuwait, 2010.

Amendola, V., & Meneghetti, M. "What controls the composition and the structure of Nano materials generated by laser ablation In liquid solution?." PhysicalChemistry Chemical Physics 15(9):3027-3046, 2013.

Sakka, T., Iwanaga, S., Ogata, Y. H., Matsunawa, A., & Takemoto, T., ''Laser ablation at solid–liquid interfaces: An approach from optical emissionspectra",J.Chem.Phys.,112,8645,2000

Patra, S. K., "A Novel Chemical Approach to Fabrication ZnO Nanostructures"Master Thesis, Indian Institute of Technology, Kharagpur, India.

Vašina, Petr. "Plasma diagnostics focused on new magnetron sputtering devices for thin film deposition." Brno, Czech Republic: Masaryk University In Brno, Department of Physical Electronics ,2005.‏

Fyhn, A. M. A., " Electrodeposition of Metal Oxides for Solar Cell Applications," Norwegian University of Science and Technology, 2012

Perednis, Dainius." Thin film deposition by spray pyrolysis and the application in solid oxide fuel cells". Diss. ETH Zurich, 2003

Abeles, F., "Optical Properties of Solids", North-Holland and Publishing, 1972

Green, M.A., "Solar Cells", Translated by Y.M. Hassan, University of Mosul, 1989.

Kasap, S. O., "Principles of Electronic Materials and Devices", McGraw – Hill, New York, 2002

P. W., & Eberly, J. H., " Laser Physics", John Wiley and Sons, 2010

Geusic, J. E.; Marcos, H. M.; Van Uitert, L. G. "Laser Oscillations in Nd-doped Yttrium Aluminum, Yttrium Gallium and gadolinium Garnets". Applied Physics Letters, 1964

Kittel, C., "Introduction to Solid State physics", 5th. John Wiley and Sons, Inc., 1976

M. F. Von Allmen, "Coupling of Laser RadIation to Metals and Semiconductors," in Physical Processes In Laser-Materials Interactions, New York, plenum, 1983, p. 50.

R. Ditchburn, Light, London: Academic Press, 1976, p. 534.

J. P. McKelvey, Solid State and SemIconductor Physics, FL: Harper and Row, 1966, p. 256.

W. Steen, Laser Material Processing, 4 ed., London: SpringerVerlag, 2010.

J. F. Ready, "material Processing-An Overview," Proceedings of the IEEE,, vol. 70, no. 6, pp. 533 -544, June 1982.

J. F. Ready, "Laser Material Interaction," in LIA Handbook of Laser Materials Processing, Orlando, FL: Laser Institute of America, 2001, pp. 167-204.

T. H. Maiman, "Stimulated Optical Radiation in Ruby," Nature, Vol. 187, pp. 493-494, 6 Aug. 1960.

H. Zeng, X. W. Du, S. C. Singh, S. A. Kulinich, S. Yang, J. He, W. Cai, "Nanomaterials via Laser Ablation/Irradiation in Liquid: A Review," Advanced Functional materials, vol. 22, p. 1333–1353, 2012

R. E. Russo, "Laser Ablation," Applied Spectroscopy, vol. 49,

Z. Yue, J. Economy, "Nanoparticle and Nanoporous Carbon Adsorbents for Removal of Trace Organic Contaminants from Water," Journal of Nanoparticle Research, vol 7, no. 4-5, pp. 2005.

M. Kato, M. Ishibashi, "Carbon nanoparticle composite actuators," Journal of Physics, vol. 127, no. 1, pp. 1- 6, 2008.

H. Yoon, S. Ko, J. Jang, "Nitrogen-doped magnetic carbon nanoparticles as catalyst supports for efficient recovery and recycling," Chem. Commun, p. 1468–1470, 2007.

F. Coloma, J. Narciso-Romero, A. Sepulvbda-Escribano, F. Rodriguez-Reinoso, "Gas Phase Hydrogenation of Crotonaldehyde over Platinum Supported on Oxidized Carbon Black," Carbon, vol. 36, no. 7- 8, pp. 1011-1019, 1998

Kim, E. Shibata, R. Sergiienko, T. Nakamura, "Purification and separation of carbon nanocapsules as a magnetic carrier for drug delivery systems," Carbon, vol. 46, no. 12, pp. 1523-1529

Janet, A.S., Sheila, F. M., Wiliam, J. D., & Wendell, D.H., "Prediction of Aqueous Diffusion Coefficients for Organic Compounds at 25 C". Chemosphere , Vol:38(10), pp., 2381-2406, 1999

Scharmke, J, A., Murphy, S. F., Doucctte, W. J., & Hintze, W. D., "Chemosphere",38 (10), 2381,1999

Crosby, D. G., "Environmental Toxicology and Chemistry", New York, p33, 1998

Warren, V., & Hammer, M.J., "Water Supply and Pollution control", 7th edition. Prentice – hall, ISBN 0-13-140970-0, USA, 2005. [105] Clark, R. M., "Evaluation of BAT for VOCs in Drinking Water", Journal of Environment Engineering,1991.

Authors

Sumia Abbas Hussain
Hawra Haider Mohsen
Fatima Muhannad Saadi
Heba Mahmoud Abdel Khader
Hussain , S. A. ., Mohsen, H. H. ., Saadi , F. M. ., & Khader, H. M. A. . (2023). Study of Optical and Structural Properties of Te/chlorophyll Nano-composites. Journal of Current Medical Research and Opinion, 6(12), 1927–1937. https://doi.org/10.52845/CMRO/2023/6-12-4
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