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Comparative Study of the Bacteriological Activity of Zinc Oxide and Copper Oxide Nanoparticles

References [1] Hench, L.L.; West, J.K., The sol-gel process, Chem. Rev ., 1990 , 90 , 33-72 [2] Wright, J. D.; Sommerdijk, N. A. J. M., Sol-gel materials: chemistry and applications. Advanced chemistry texts , 2001 , 4 . Amsterdam: Gordon and Breach Science Publishers. [3] Brinker, C. J.; Scherer, G. W., Sol-Gel Science: Physics and Chemistry of Sol-Gel Processing Academic Press , 1990 [4]. Nejati, A.; Rezvani, Z.; Pakizev, R., Synthesis of ZnO Nanoparticles and Investigation of the Ionic Template Effect on Their Size and Shape

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Evaluation of Genetic Damage in Oreochromis mossambicus Exposed to Selected Nanoparticles by Using Micronucleus and Comet Bioassays

REFERENCES Al-Sabti, K., Metcalfe, C. D. (1995): Fish micronuclei for assessing genotoxicity in water. Mutation Research. 343, 2-3, 121-135. Anbumani, S., Mohankumar, M.N. (2012): Gamma radiation induced micronuclei and erythrocyte cellular abnormalities in the fish Catla catla . Aquatic Toxicology. 122–123, 125–132. Ansari, M.A., Khan, H.M., Khan, A.A., Cameotra, S.S., Saquib, Q., Musarrat, J. (2014): Interaction of Al 2 O 3 nanoparticles with Escherichia coli and their cell envelope biomolecules. Journal of Applied Microbiology. 116, 4

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Experimental setup for light-to-heat NIR conversion measurements of gold nanoparticle solutions

. Nanomedicine , 2012 , 7 , 1043 – 1080 [5] El-Sayed, M.A., Some interesting properties of metals confined in time and nanometer space of different shapes, Acc Chem Res, 2001 , 34 (4), 257 – 264. [6] Borzabadi-Farahani, A.; Borzabadi, E.; Lynch E., Nanoparticles in orthodontics, a review of antimicrobial and anti-caries applications, Acta Odontologica Scandinavica , 2014 , 72 (6), 413 – 417 [7] Allen, T. M.; Cullis, P. R., Drug delivery systems: entering the mainstream, Science , 2004 , 303 (5665), 1818 – 1822. [8] Nie, S.; Xing, Y.; Kim

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Experimental setup for light-to-heat NIR conversion measurements of gold nano-particles’ solutions

, Int. J. Nanomedicine , 2012 , 7, 1043 – 1080 [5]. El-Sayed, M.A., Some interesting properties of metals confined in time and nanometer space of different shapes, Acc Chem Res, 2001 , 34(4), 257 – 264. [6]. Borzabadi-Farahani, A.; Borzabadi, E.; Lynch, E., Nanoparticles in orthodontics, a review of antimicrobial and anti-caries applications, Acta Odontologica Scandinavica , 2014 , 72 (6), 413 – 417 [7]. Allen, T. M.; Cullis, P. R., Drug delivery systems: entering the mainstream, Science , 2004 , 303 (5665), 1818 – 1822. [8]. Nie, S

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The Protective Role of Vitamin C and Chitosan Against Paraquat-induced Oxidative Stress in Muscles of Common Carp (Cyprinus carpio)

): Chitosan nanoparticle to carry vitamin C through the gastrointestinal tract and induce the non-specific immunity system of rainbow trout ( Oncorhynchus mykiss ). Carbohydrate Polymers, 86, 1, 142-146. Alishahi, A., Mirvaghefi, A., Tehrani, M., Farahmand, H., Shojaosadati, S., Dorkoosh, F., Elsabee, M. (2011b): Shelf life and delivery enhancement of vitamin C using chitosan nanoparticles. Food Chemistry, 126, 3, 935-940. Baltusnikas, J., Venckunas, T., Kilikevicius, A., Fokin, A., Ratkevicius, A. (2015): Efflux of Creatine kinase from isolated soleus muscle

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Editorial 2019: Continuation of Promotion and New Efforts

roach Rutilus basak (Heckel, 1843) (Pisces, Cyprinidae): Biological–ecological contribution for biodiversity conservation of freshwater fish. Croatian Journal of Fisheries, 76, 66-71. Vidya, P.V., Chitra, K.C. (2018): Evaluation of genetic damage in Oreochromis mossambicus exposed to selected nanoparticles by using micronucleus and comet bioassays. Croatian Journal of Fisheries, 76, 115-124.

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Evaluation of Algae Farming Using the Chlorella Bioassay

): Aluminium deposition in Hydras. Folia biologica (Kraków), 57, 3-4, 139-142. Lei, C., Zhang, L., Yang, K., Zhu, L., Lin, D. (2016): Toxicity of iron-based nanoparticles to green algae: Effects of particle size, crystal phase, oxidation state and environmental aging. Environmental Pollution, 218, 505-512. Maruyama, I., Nakao, T., Shigeno, I., Ando, Y., Hiarayama, K. (1997): Application of unicellular algae Chlorella vulgaris for the mass-culture of marine rotifer Brachionus . Hydrobiologia, 358, 133-138. Moran, N. A. (2006): Symbiosis. Current Biology

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Design of Dye-Sensitized Solar triphenodioxazine using TiO2 as a semiconductor

Abstract

The present work deals with the synthesis of multichromophores which strongly absorb the solar spectrum to functionalize the nanoparticle oxide semiconductor used in the hybrid cells. At first, we developed a material that forms a chromophore triphenodioxazine. We obtained some triphenodioxazines with high yields up to 70 percent. On the other hand, we have carried out many tests such as UV-Visible, Cyclic voltammetry for our molecules to check their electronic and optical properties. The results confirmed that these chromophores meet the criteria for use in photovoltaic cells. Finally, we have successfully realized photovoltaic cells with triphenodioxazine. The findings were very interesting since the photovoltaic conversion efficiencies ranged from 4.30% to 6.30%. The new synthesis strategy of these chromophores opens a way for the development of organic materials used for photovoltaics.

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Covalent immobilization of rabbit-antiaflatoxin-antibodies onto the poly-acrylamideacrylonitrile as well as hybrid material UREASIL and developing an optical immunosensor

.1155/2014/706291 [3]. Sharma A, Matharu Z, Sumana G, Solanki PR, Kim CG, Malhotra BD. Antibody immobilized cysteamine functionalized-gold nanoparticles for aflatoxin detection Thin Solid Films. 2010; 519 (3):1213-1218. http://dx.doi.org/10.1016/j.tsf.2010.08.071 [4]. Zhang J, Wang J, Zhu J, Xu J, Chen H, Xu D. An electrochemical impedimetric arrayed immunosensor based on indium tin oxide electrodes and silver-enhanced gold nanoparticles. Microchim. Acta. 2008; 163(1):63-70. http://dx.doi.org/10.1007/s00604-008-0944-y [5]. Beatriz Prieto-Simon, Monika

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Experimental studies on equilibrium adsorption isosteres and determination of the thermodynamic quantities of polar media on alumina Al2O3

References [1] Sattler, K., D., Handbook of Nanophysics - Nanoparticles and Quantum Dots, CRC Press, 2011, 718. [2] Yang, R. T., Adsorbents: Fundamentals and applications, Wiley-Interscience, 2003, 410. [3] Niederberger, M.; Pinna, N., Metal Oxide Nanoparticles in Organic Solvents. Synthesis, Formation, Assembly and Application, Springer Verlag, 2009, 216. [4] Saha, P.; Chowdhury, S., Insight Into Adsorption Thermodynamics, Thermodynamics, 2011, 349-364. [5] Jolivet, J.; Henry, M

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