The Crystal Structure Analysis of Silver Nanowires Using Rietveld Method for Optoelectronic Application
In this study, the synthesis and analysis of the crystal structure of silver nanowires (AgNWs) have been performed using the polyol method. In this research, materials used as the main raw material were silver nitrate (AgNO3). Polyvinyl pyrrolidone (PVP) was used as a capping agent and stabilizer...
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Journal of Nano Research
2022
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id-ugm-repo.2842682023-12-05T01:57:08Z https://repository.ugm.ac.id/284268/ The Crystal Structure Analysis of Silver Nanowires Using Rietveld Method for Optoelectronic Application Junaidi, Junaidi Afriliani, Lina Manurung, Posman Sembiring, Simon Triyana, Kuwat Hadi, Sutopo Optical Physics In this study, the synthesis and analysis of the crystal structure of silver nanowires (AgNWs) have been performed using the polyol method. In this research, materials used as the main raw material were silver nitrate (AgNO3). Polyvinyl pyrrolidone (PVP) was used as a capping agent and stabilizer, and Iron (III) Chloride (FeCl3) for controlling the shape and size of AgNWs. AgNWs were synthesized using two different solvents i.e., ethylene glycol (EG) and propylene glycol (PG). The crystal structure of AgNWs was analyzed using X-ray diffraction (XRD) with a scanning 2θ in the range of 20° to 90°. Furthermore, the structure and electron diffraction patterns were analyzed using transmission electron microscopy (TEM). The XRD pattern of the AgNW sample also has five diffraction peaks, these five diffraction peaks were identified at 38.24°, 44.42°, 64.54°, 77.52°, and 81.68° representing lattice constants (111), (200), (220), (311), and (222), respectively. Based on the results of the calculation of lattice constant values of AgNWs-EG and AgNWs-PG were 4.084 Å. The TEM images of AgNWs-EG have a diameter of 84 to 133 nm, corresponding to the SEM calculation data having a diameter of 109 ± 22 nm. AgNWs-PG has a diameter of 84 to 264 nm. The study results revealed that the results of the characterization performed are interconnected. The XRD characterization results revealed that both samples were crystal-indexed. AgNWs-PG has a larger crystal size than AgNWs-EG Journal of Nano Research 2022 Other NonPeerReviewed application/pdf en https://repository.ugm.ac.id/284268/1/138.The%20Crystal%20Structure%20Analysis%20of%20Silver%20Nanowires%20Using%20Rietveld%20Method%20for%20Optoelectronic%20Application.pdf Junaidi, Junaidi and Afriliani, Lina and Manurung, Posman and Sembiring, Simon and Triyana, Kuwat and Hadi, Sutopo (2022) The Crystal Structure Analysis of Silver Nanowires Using Rietveld Method for Optoelectronic Application. Journal of Nano Research. https://efaidnbmnnnibajpcglclefindmkaj/http://repository.lppm.unila.ac.id/42658/1/JNanoR.71.1.pdf 10.4028/www.scientific.net/JNanoR.71.1 |
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Optical Physics Junaidi, Junaidi Afriliani, Lina Manurung, Posman Sembiring, Simon Triyana, Kuwat Hadi, Sutopo The Crystal Structure Analysis of Silver Nanowires Using Rietveld Method for Optoelectronic Application |
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In this study, the synthesis and analysis of the crystal structure of silver nanowires
(AgNWs) have been performed using the polyol method. In this research, materials used as the main
raw material were silver nitrate (AgNO3). Polyvinyl pyrrolidone (PVP) was used as a capping agent
and stabilizer, and Iron (III) Chloride (FeCl3) for controlling the shape and size of AgNWs. AgNWs
were synthesized using two different solvents i.e., ethylene glycol (EG) and propylene glycol (PG).
The crystal structure of AgNWs was analyzed using X-ray diffraction (XRD) with a scanning 2θ in
the range of 20° to 90°. Furthermore, the structure and electron diffraction patterns were analyzed
using transmission electron microscopy (TEM). The XRD pattern of the AgNW sample also has five
diffraction peaks, these five diffraction peaks were identified at 38.24°, 44.42°, 64.54°, 77.52°, and
81.68° representing lattice constants (111), (200), (220), (311), and (222), respectively. Based on the
results of the calculation of lattice constant values of AgNWs-EG and AgNWs-PG were 4.084 Å.
The TEM images of AgNWs-EG have a diameter of 84 to 133 nm, corresponding to the SEM
calculation data having a diameter of 109 ± 22 nm. AgNWs-PG has a diameter of 84 to 264 nm. The
study results revealed that the results of the characterization performed are interconnected. The XRD
characterization results revealed that both samples were crystal-indexed. AgNWs-PG has a larger
crystal size than AgNWs-EG |
format |
Other NonPeerReviewed |
author |
Junaidi, Junaidi Afriliani, Lina Manurung, Posman Sembiring, Simon Triyana, Kuwat Hadi, Sutopo |
author_facet |
Junaidi, Junaidi Afriliani, Lina Manurung, Posman Sembiring, Simon Triyana, Kuwat Hadi, Sutopo |
author_sort |
Junaidi, Junaidi |
title |
The Crystal Structure Analysis of Silver Nanowires Using Rietveld Method for Optoelectronic Application |
title_short |
The Crystal Structure Analysis of Silver Nanowires Using Rietveld Method for Optoelectronic Application |
title_full |
The Crystal Structure Analysis of Silver Nanowires Using Rietveld Method for Optoelectronic Application |
title_fullStr |
The Crystal Structure Analysis of Silver Nanowires Using Rietveld Method for Optoelectronic Application |
title_full_unstemmed |
The Crystal Structure Analysis of Silver Nanowires Using Rietveld Method for Optoelectronic Application |
title_sort |
crystal structure analysis of silver nanowires using rietveld method for optoelectronic application |
publisher |
Journal of Nano Research |
publishDate |
2022 |
url |
https://repository.ugm.ac.id/284268/1/138.The%20Crystal%20Structure%20Analysis%20of%20Silver%20Nanowires%20Using%20Rietveld%20Method%20for%20Optoelectronic%20Application.pdf https://repository.ugm.ac.id/284268/ https://efaidnbmnnnibajpcglclefindmkaj/http://repository.lppm.unila.ac.id/42658/1/JNanoR.71.1.pdf |
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