Interconnect Fabrication on Polymer Substrate using Submicron/Nano Silver Particles with the Assistance of Low-Density Irradiations

JOM ◽  
2019 ◽  
Vol 71 (9) ◽  
pp. 3057-3065
Author(s):  
Guo-Lun Huang ◽  
Po-Hsiang Chiu ◽  
Masahisa Fujino ◽  
Jenn-Ming Song
2021 ◽  
Vol 139 ◽  
pp. 432-441
Author(s):  
Subrata Trivedi ◽  
Mohammed Ali Alshehri ◽  
Al Thabiani Aziz ◽  
Chellasamy Panneerselvam ◽  
Hatem. A. Al-Aoh ◽  
...  

2021 ◽  
Vol 21 (1) ◽  
pp. 35-46
Author(s):  
Jinwei ZHANG ◽  
Weite YANG ◽  
Yonghan WEN ◽  
Hongbin SUN ◽  
Guojun ZHU ◽  
...  

In order to explain the interaction between collagen and nano-silver, gelatin solution was blended with nano-silver particles (AgNPs) with particle size 26 mm, and then the mixture was interacted under different time, pH and temperature. The changes in the process were measured by UV-Vis, fluorescence spectroscopy, dynamic light scattering and FT-IR. The results showed that the main type of reaction between gelatin and AgNPs was electrostatic interaction and the interaction was diffusive encounters. The particle size and distribution of nano-silver would not be affected by gelatin, however, there was dynamic fluorescence quenching of gelatin after nano-silver particle induced. The longer time and lower pH were beneficial for the interaction process while the interaction balanced after 60 min and pH 3.0 resulted in the most drastic interaction. Moreover, nano-silver would not impair gelatin structure during the interaction process. In short, the results in this work might be a foundation and reference for applying nano-silver in antibacterial leather producing.


Author(s):  
Shakira Shaik ◽  
Lwamkelekile Mkize ◽  
Mthokozisi Khumalo ◽  
Nisha Singh

Polyhedron ◽  
2009 ◽  
Vol 28 (12) ◽  
pp. 2522-2530 ◽  
Author(s):  
Revathi Janardhanan ◽  
Murugan Karuppaiah ◽  
Neha Hebalkar ◽  
Tata Narsinga Rao

2020 ◽  
Vol 12 (2) ◽  
pp. 125-131
Author(s):  
Jixing Yang

This paper studies the application of nano drug carrier in the detection of human hemoglobin content. Taking nano modified electrode as nano drug carrier, the application of nano silver particle modified silver electrode and nano poly thionine modified electrode in the detection of human hemoglobin content is studied. Atomic force microscope, UV-Vis and FT-IR are used to characterize the nano poly(thionine), and the electrochemical properties of nano poly(thionine) modified electrode. The silver electrode decorated with nano silver particles is made. The electrochemical behavior of hemoglobin on the modified electrode is studied. The experimental results show that a pair of redox peaks appear in the silver electrode modified by nano silver particles. With the increase of Hb concentration, the redox peak current in the cyclic voltammogram of the silver electrode modified by nano silver particles increases correspondingly, and the hemoglobin has a good current response on the silver electrode modified by nano silver particles, which is a kind of adsorption current. The electrochemical activity of nano poly thionine shows a decreasing tendency with pH value. After adding hemoglobin, there is a significant reduction peak near –0.4 V. With the increase of hemoglobin concentration, the reduction peak current increases accordingly. The nano poly thionine modified electrode has a catalytic effect on the reduction of hemoglobin. The results show that the two nano drug carriers, nano poly thionine modified electrode and nano silver particle modified silver electrode, can effectively analyze and determine human hemoglobin.


2017 ◽  
Vol 93 ◽  
pp. 121-126
Author(s):  
Alicia A. Taylor ◽  
M. Yusuf Khan ◽  
Jennifer Helbley ◽  
Sharon L. Walker

2008 ◽  
Vol 47-50 ◽  
pp. 849-852 ◽  
Author(s):  
Lin Li ◽  
Yi Li ◽  
Jia Shen Li ◽  
Lei Yao ◽  
Arthur F.T. Mak ◽  
...  

Poly-L-Lactide (PLLA) composites were prepared with nano silver particles with the weight ratios of nano silver particles to PLLA (Ag/PLLA) at 0.5%, 2.5%, 5%, 7.5% and 10% (w/w). In vitro cytotoxicity tests were conducted firstly to evaluate the cytotoxicity of the composites. The results indicated that PLLA, 0.5%, 2.5% and 5% Ag/PLLA composites were nontoxic to cells, while 7.5% and 10% Ag/PLLA composites were significantly toxic to cells. Cell proliferation experiments and antibacterial tests were also performed. 5% Ag/PLLA was found the best for cell proliferation with obvious antibacterial property. Thus, Ag/PLLA can be used as nontoxic scaffolds for tissue engineering with antibacterial property.


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