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  4. Fast and easy synthesis of silver, copper, and bimetallic nanoparticles on cellulose paper assisted by ultrasound
Details

Fast and easy synthesis of silver, copper, and bimetallic nanoparticles on cellulose paper assisted by ultrasound

Journal
Ultrasonics Sonochemistry
ISSN
1350-4177
Date Issued
2023
Author(s)
Rodrigo Araya-Hermosilla
MARTINEZ ARENAS, JESSICA ISABEL  
Facultad de Medicina Clínica Alemana Universidad del Desarrollo  
César Zúñiga Loyola
Sara Ramírez
Sebastián Salazar
Charles S. Henry
Roberto Lavín
SILVA GONZALEZ, NATALY ROXANA  
Facultad de Diseño  
Type
Resource Types::text::journal::journal article
Scopus ID
2-s2.0-85167441425
WoS ID
WOS:001063070800001
DOI
10.1016/j.ultsonch.2023.106545
URL
https://investigadores.udd.cl/handle/123456789/7910
URL Institutional Repository
https://hdl.handle.net/11447/8844
Cite this document
Araya-Hermosilla, R., Martínez, J., Loyola, C. Z., Ramírez, S., Salazar, S., Henry, C. S., Lavín, R., & Silva, N. (2023). Fast and easy synthesis of silver, copper, and bimetallic nanoparticles on cellulose paper assisted by ultrasound. Ultrasonics Sonochemistry, 99, 106545. https://doi.org/10.1016/j.ultsonch.2023.106545
Subjects
bimetallic nanoparticles

; 

cellulose

; 

composite

; 

copper

; 

paper

; 

silver

; 

sonochemistry

; 

synthesis

; 

ultrasound

; 

ascorbic acid

; 

copper compounds

; 

paper

; 

silver compounds

; 

ultrasonic frequencies

; 

ascorbic acid

; 

copper

; 

copper compounds

; 

elastic moduli

; 

nanoparticles

; 

paper

; 

silver compounds

; 

sonochemistry

; 

synthesis (chemical)

; 

ultrasonics

; 

ascorbic acid

; 

cellulose

; 

copper

; 

copper nanoparticle

; 

copper oxide nanoparticle

; 

copper sulfate

; 

plastic

; 

silver

; 

silver nanoparticle

; 

silver nitrate

; 

sodium chloride

; 

bimetallic nanoparticles

; 

cellulose papers

; 

copper nanoparticles

; 

high-low

; 

higher yield

; 

mechanical analysis

; 

metallic nanoparticles

; 

paper samples

; 

salt precursors

; 

systematic method

; 

absorption

; 

article

; 

chemical structure

; 

comparative study

; 

concentration process

; 

controlled study

; 

crystal structure

; 

dispersity

; 

drug concentration

; 

hydrogen bond

; 

mechanics

; 

particle size

; 

precursor

; 

process optimization

; 

scale up

; 

synthesis

; 

ultrasound

; 

cellulose
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