Gold Nanoparticles in Liquid Based on Photonic Crystal Fiber PCF for Sensors Application

Article Preview

Abstract:

The effect of laser wavelength on gold nanoparticle (Au NPs) fabrication is reported by using the laser ablation in the liquid method in the ethanol. The Pulsed Laser ablation in liquid technique of the gold target was ablated using an Nd:YAG laser nanopulsed nanosecond after that the investigation of the gold NPs was tested by the AFM (Atomic Force Microscopy), and the (XRD) X-ray diffraction. The results showed the characteristics of prepared NPs, depending on XRD, AFM. NPs obtained by 532 nm laser possess better properties than that achieved by 1064 nm laser according to the highest intensity of shorter wavelengths.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

23-28

Citation:

Online since:

January 2020

Export:

Price:

* - Corresponding Author

[1] M. Maciulevičius, A. Vinčiūnas, M. Brikas, A. Butsen, N. Tarasenka, N. Tarasenko, G. Račiukaitis, Pulsed-laser generation of gold nanoparticles with on-line surface plasmon resonance detection, Appl. Phys. A 111 (2013)289-295. https://doi.org/10.1007/s00339-012-7535-9.

DOI: 10.1007/s00339-012-7535-9

Google Scholar

[2] W. Norsyuhada, W. Mohd, N. Bidin, S. Affandia, Siti P. Boharib, Synthesize of Nanoparticles with 532 nm and 1064 nm Pulse Laser ablation, Jurnal Teknologi (Sciences & Engineering) 78(3) (2016) 267–270.

DOI: 10.11113/jt.v78.7530

Google Scholar

[3] Tran X. Phuoc, Complete Green Synthesis of Gold Nanoparticles using Laser Ablation in Deionized Water Containing Chitosan and Starch, Journal of Materials Science & Nanotechnology 2(2) 2014 202-209.

DOI: 10.15744/2348-9812.1.401

Google Scholar

[4] M. Das and K. H. Shim, Seong Soo A. An & Dong K. Yi, Review on Gold Nanoparticles and Their Applications, Toxicol. Environ. Health. Sci. 3(4) (2011) 193-205.

Google Scholar

[5] F. Mafune, Structure diagram of gold nanoparticles in solution under irradiation of UV pulse laser, 397 (2004) 133–137.

DOI: 10.1016/j.cplett.2004.08.108

Google Scholar

[6] A. Kashyout, Hesham M. A. Soliman, M. Nabil, Ahmed A. Bishara, Fabrication of Congo Red/Oxidized Porous Silicon (CR/OPS) pH-Sensors, Materials Sciences and Applications 4 (2013) 79-87.

DOI: 10.4236/msa.2013.48a011

Google Scholar

[7] S. Eustis, M. A. El-sayed, Why gold nanoparticles are more precious than pretty gold : Noble metal surface plasmon resonance and its enhancement of the radiative and nonradiative properties of nanocrystals of different shapes, Chem Soc Rev. 35(3) (2006) 209-17.

DOI: 10.1039/b514191e

Google Scholar

[8] K. Yamada, K. Miyajima, and F. Mafune, Thermionic Emission of Electrons from Gold Nanoparticles by Nanosecond Pulse-Laser Excitation of Interband, J. Phys. Chem. C 111 (30) (2007) 11246–11251.

DOI: 10.1021/jp0730747

Google Scholar

[9] S. Krishnamurthy, A. Esterle, N. C. Sharma, and S. V Sahi, Yucca -derived synthesis of gold nanomaterial and their catalytic potential, Nanoscale Research Letters 9 (2014) 627 1–9, https://doi.org/10.1186/1556-276X-9-627.

DOI: 10.1186/1556-276x-9-627

Google Scholar

[10] F. Benabid, J. C. Knight, G. Antonopoulos, P. S. J. Russell, and J. Russell, Stimulated Raman scattering in hydrogen-filled hollow-core photonic crystal fiber, Science 298(5592) (2002) 399–402.

DOI: 10.1126/science.1076408

Google Scholar

[11] R. Buczynski, Photonic crystal fibers, Acta Phys. Pol. A, 106 (2) (2004) 141–167.

DOI: 10.12693/aphyspola.106.141

Google Scholar

[12] O. A. Schmidt, M. K. Garbos, T. G. Euser, and P. St. J. Russell, Reconfigurable Optothermal Microparticle Trap in Air-Filled Hollow-Core Photonic Crystal Fiber, Phys. Rev. Lett. 109 (2012) 024502.

DOI: 10.1103/physrevlett.109.024502

Google Scholar

[13] Mazin Ali A. Ali, Salah Aldeen Adnan and Sarah Ali. Al-Saeedi, Transporting 8 × 10 Gbps WDM Ro-FSO Under Various Weather Conditions, Journal of Optical Communications 2017 DOI: https://doi.org/10.1515/joc-2017-0140.

DOI: 10.1515/joc-2017-0140

Google Scholar

[14] N. Shawky, Salah A. Adnan, Hakan Altan, Cumali Sabah, Single- and double-sided sensor applications of metamaterials based on square-ring and diamond resonators for terahertz region, Modern Physics Letters B 31(08) (2017) 1750072.

DOI: 10.1142/S0217984917500725

Google Scholar

[15] Salah A. Adnan, Ahmed W. Abdulwahhab, Shaymaa N. Ismail, Fusion splicing: The penalty of increasing the collapse length of the air holes in ESM-12B photonic crystal fibers, Optica Applicata XLVI(2) (2016) 265-275.

Google Scholar

[16] Mudhafar H. Ali, Abulla K. Abass, Shaymaa Al Tahhan, Impact of Apodization Profile on Performance of Fiber Bragg Grating Strain–Temperature Sensor, Journal of Communications 14(1) (2019) 53-57.

DOI: 10.12720/jcm.14.1.53-57

Google Scholar

[17] X. Feng, W. Feng, C. Tao, D. Deng, X. Qin, and R. Chen, Hydrogen sulfide gas sensor based on graphene-coated tapered photonic crystal fiber interferometer Sensors Actuators, B Chem. 247 (2017) 540–545.

DOI: 10.1016/j.snb.2017.03.070

Google Scholar

[18] Abulla K. Abass, Mudhafar H. Ali, Savana A. Abd Al Hussein, Optimization of Hybrid Fiber Amplifier Utilizing Combined Serial-Parallel Configuration, IOP Conference Series Materials Science and Engineering 454(1) (2018) 012014.

DOI: 10.1088/1757-899X/454/1/012014

Google Scholar

[19] Y. Zhao, X. G. Li, L. Cai, and Y. Yang, Refractive index sensing based on photonic crystal fiber interferometer structure with up-tapered joints, Sensors Actuators, B Chem. 221 (2015) 406–410.

DOI: 10.1016/j.snb.2015.06.148

Google Scholar

[20] M. Morshed, M. Imran Hassan, T. K. Roy, M. S. Uddin, and S. M. Abdur Razzak, Microstructure core photonic crystal fiber for gas sensing applications, Appl. Opt. 54(29) (2015) 8637-8643.

DOI: 10.1364/ao.54.008637

Google Scholar

[21] B. Kim, T.-H. Kim, L. Cui, and Y. Chung, Twin core photonic crystal fiber for in-line Mach-Zehnder interferometric sensing applications, Opt. Express 17 (18) (2009) 15502–15507.

DOI: 10.1364/oe.17.015502

Google Scholar

[22] Jassim K. Hmood, Siamak Emami, Kamarul Ariffin Noordin, Harith Ahmad, Sulaiman Wadi Harun, Hossam Shalaby, Optical frequency comb generation based on chirping of Mach–Zehnder Modulators, Optics Communications 344(1) 2015 139-146.

DOI: 10.1016/j.optcom.2015.01.054

Google Scholar

[23] A R Muhammad, S D Emami, J K Hmood, K Sayar, R Penny, H A Abdul-Rashid, H Ahmad and S W Harun, Enhanced performance of an S-band fiber laser using a thulium-doped photonic crystal fiber, Laser Physics 24(11) (2014)115201.

DOI: 10.1088/1054-660X/24/11/115201

Google Scholar

[24] Md. Nazmul Hossen, Md.Ferdous, Sujan Chakma, Bikash KumarPaul, KawsarAhmed, Design and analysis of biosensor based on surface plasmon resonance, Sensing and Bio-Sensing Research 21(2018) 1-6.

DOI: 10.1016/j.sbsr.2018.08.003

Google Scholar

[25] Sujan Chakma, Md Abdul Khalek, Bikash Kumar Paul, Kawsar Ahmed, Md Rabiul Hasan, Ali Newaz Bahar. Gold-coated photonic crystal fiber biosensor based on surface plasmon resonance: Design and analysis, Sensing and Bio-Sensing Research, 18 (2018) 7-12.

DOI: 10.1016/j.sbsr.2018.02.003

Google Scholar

[26] Md. Abdul Khalek, Sujan Chakma, Bikash Kumar Paul, Kawsar Ahmed, Dataset of surface plasmon resonance based on photonic crystal fiber for chemical sensing applications, Data in Brief 19 (2018) 76–81.

DOI: 10.1016/j.dib.2018.05.026

Google Scholar

[27] A. A. Rifat, G. Amouzad Mahdiraji, D. M. Chow, Y. G. Shee, R. Ahmed, and F. R. M. Adikan, Photonic Crystal Fiber-Based Surface Plasmon Resonance Sensor with Selective Analyte Channels and Graphene-Silver Deposited Core, Sensors 15 (5) (2015) 11499–11510.

DOI: 10.3390/s150511499

Google Scholar

[28] Md. I. Islam, Bikash K. Paul, K. Ahmed, Md. R. Hasan, S. Chowdhury, Md. S. Islam, S. Sen, Ali N. Bahar, S.Asaduzzaman, Highly birefringent single mode spiral shape photonic crystal fiber based sensor for gas sensing applications, Sensing and Bio-Sensing Research 14 (2017) 30-38.

DOI: 10.1016/j.sbsr.2017.04.001

Google Scholar

[29] Nur A.S. Omar, Yap W. Fen, J. Abdullah, Che E. N. C. E. Chikd , Mohd A. Mahdi, Development of an optical sensor based on surface plasmon resonance phenomenon for diagnosis of dengue virus E-protein, Sensing and Bio-Sensing Research 20 (2018) 16–21.

DOI: 10.1016/j.sbsr.2018.06.001

Google Scholar

[30] M. Saifur Rahman, Md. Shamim Anower, Labid B. Bashar, Khaleda A. Rikta, Sensitivity analysis of graphene coated surface plasmon resonance biosensors for biosensing applications, Sensing and Bio-Sensing Research 16 (2017) 41–45.

DOI: 10.1016/j.sbsr.2017.11.001

Google Scholar

[31] S. Asaduzzaman, K. Ahmed, Investigation of ultra-low loss surface plasmon resonance-based PCF for biosensing application, Results in Physics 11(2018) 358-361.

DOI: 10.1016/j.rinp.2018.09.026

Google Scholar

[32] Tawfiq, Z.H., Fakhri, M.A., Adnan, S.A., Photonic Crystal Fibres PCF for Different Sensors in Review, IOP Conference Series: Materials Science and Engineering 454(1) (2018) 012173.

DOI: 10.1088/1757-899x/454/1/012173

Google Scholar

[33] Fakhri, M.A., Salim, E.T., Wahid, M.H.A., Abdulwahhab, A.W., Hashim, U., Salim, Z.T., Efficiency enhancement of optical strip waveguide by the effect of heat treatment, Optik 180, (2019) 768-774.

DOI: 10.1016/j.ijleo.2018.12.006

Google Scholar

[34] Fakhri, M.A., Al-Douri, Y., Hashim, U., Fabricated Optical Strip Waveguide of Nanophotonics Lithium Niobate, IEEE Photonics Journal 8(2) (2016) -1-104500410.

DOI: 10.1109/jphot.2016.2531583

Google Scholar

[35] Salim, E.T., Fakhri, M.A., Ismail, R.A., Abdulwahhab, A.W., Salim, Z.T., Munshid, M.A., Hashim, U., Effect of light induced heat treatment on the structural and morphological properties of LinbO3 thin films, Superlattices and Microstructures 128, (2019) 67-75.

DOI: 10.1016/j.spmi.2019.01.016

Google Scholar

[36] Fakhri, M.A., Salim, E.T., Wahid, M.H.A., Abdulwahhab, A.W., Hashim, U., Salim, Z.T., Efficiency enhancement of optical strip waveguide by the effect of heat treatment, Optik 180, (2019) 768-774.

DOI: 10.1016/j.ijleo.2018.12.006

Google Scholar

[37] Agool, I.R., Salem, E.T., Hassan, M.A., Optical and electrical properties of SnO2thin film prepared using RTO method, International Journal of Modern Physics B, 25(8) (2011) 1081-1089.

DOI: 10.1142/s0217979211058614

Google Scholar

[38] Z.T. Salim, U. Hashim, M.K.Md. Arshad, M.A. Fakhri, E.T. Salim, Frequency-based detection of female Aedes mosquito using surface acoustic wave technology: Early prevention of dengue fever, Microelectron Eng, 2017,179(5): 83-90.

DOI: 10.1016/j.mee.2017.04.016

Google Scholar

[39] Salem, E.T., Agool, I.R., Hassan, M.A., Construction of SnO2/SiO2/Si heterojunction and its lineup using I-V and C-V measurements, International Journal of Modern Physics B, 25(29) (2011) 3863-3869.

DOI: 10.1142/s0217979211102022

Google Scholar

[40] Abdulrazaq, O.A., Saleem, E.T., Inexpensive near-IR photodetector, Turkish Journal of Physics, 30(1) (2006) 35-39.

Google Scholar

[41] Salim, Z.T., Hashim, U., Arshad, M.K.M., Fakhri, M.A., Salim, E.T., Zinc oxide flakes-corolla lobes like nano combined structure for SAW applications, Materials Research Bulletin 86, (2017) 215-219.

DOI: 10.1016/j.materresbull.2016.11.015

Google Scholar

[42] Marwa Abdul Muhsien, Evan T. Salem, Ibrahim R. Agool, Haidar Hamed Hamdan, Applied Nanoscience 4: 719–732 (2014).

Google Scholar

[43] Abood, M.K., Salim, E.T., Saimon, J.A., Niobium pentoxide thin film prepared using simple colloidal suspension for optoelectronic application, International Journal of Nanoelectronics and Materials, 11(2) (2018) 127-134.

Google Scholar

[44] Halboos, H.T., Salim, E.T, Silver Doped Niobium Pentoxide nanostructured thin film, Optical Structural and Morphological Properties, IOP Conference Series: Materials Science and Engineering 454(1) (2018).

DOI: 10.1088/1757-899x/454/1/012174

Google Scholar

[45] Ismail, R.A., Salim, E.T., Hamoudi, W.K., Characterization of nanostructured hydroxyapatite prepared by Nd:YAG laser deposition, Materials Science and Engineering C, 33(1) (2013) 47-52.

DOI: 10.1016/j.msec.2012.08.002

Google Scholar

[46] Salim, E.T., Rapid thermal oxidation for silicon nanocrystal based solar cell, International Journal of Nanoelectronics and Materials, 5(2) (2012) 95-100.

Google Scholar

[47] Salim, E.T., Optoelectronic properties of Fe2O3/Si heterojunction prepared by rapid thermal oxidation method, Indian Journal of Physics, 87(4) (2013) 349-353.

DOI: 10.1007/s12648-012-0229-5

Google Scholar