Influence of oxygen on the process of formation of silver nanoparticles during citrate/borohydride synthesis of silver sols

被引:43
作者
Wojtysiak, Sebastian [1 ]
Kudelski, Andrzej [1 ]
机构
[1] Warsaw Univ, Dept Chem, PL-02093 Warsaw, Poland
关键词
Silver nanoparticles; Growth mechanism; Borohydride reduction; Stabilization of silver colloid; SURFACE-ENHANCED RAMAN; CORE-SHELL NANOPARTICLES; FORMATION MECHANISMS; COLLOIDAL STABILITY; SIZE CONTROL; GOLD SOLS; CITRATE; REDUCTION; SPECTROSCOPY; SCATTERING;
D O I
10.1016/j.colsurfa.2012.06.012
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
In this work, we investigate the influence of oxygen on the process of formation of silver nanoparticles during reduction of silver nitrate with sodium borohydride in the presence of sodium citrate (Na(3)Cit) at room temperature. When small amount of borohydrides (0.02 mu mol of NaBH4 per 1 mu mol of AgNO3) is added to the solution of AgNO3 and Na(3)Cit, silver nanoparticles created "under air" are about 5 times larger than Ag nanoparticles created in the deaerated conditions. Further addition of borohydrides to the reaction mixtures leads to decrease in the average size of "large" nanoparticles formed "under air" and to increase in the size of nanoparticles formed in the deaerated solution. Explanation of the observed phenomenon is proposed (involving oxidation back by the oxygen of small silver clusters formed at a very early stage of Ag. reduction and possible fragmentation of large particles in the presence of borohydrides ions). When Ag+ cations are reduced by borohydrides at room temperature, stable silver sols may be only formed when a stabilizer of silver clusters is present in the reaction mixture. We show that, for citrates used in this contribution as stabilizers, the most stable silver sols are formed during reduction of Ag+ with BH4- at room temperature, when the concentration of citrate ions is in a range of ca. 0.5-5 mM. (C) 2012 Elsevier B.V. All rights reserved.
引用
收藏
页码:45 / 51
页数:7
相关论文
共 50 条
[41]   Hexazamacrocycle assisted sensing of silver ion through facile synthesis of silver nanoparticles [J].
Athilakshmi, J. ;
Chand, Dillip Kumar .
TETRAHEDRON LETTERS, 2010, 51 (51) :6760-6762
[42]   Formation of silver nanoparticles in photothermorefractive glasses during electron irradiation [J].
A. I. Ignat’ev ;
A. V. Nashchekin ;
V. M. Nevedomskii ;
O. A. Podsvirov ;
A. I. Sidorov ;
A. P. Solov’ev ;
O. A. Usov .
Technical Physics, 2011, 56 :662-667
[43]   Green Synthesis of Silver Nanoparticles Using Ionic Liquid and Application for the Detection of Dissolved Oxygen [J].
Tsai, Tsung-Hsuan ;
Thiagarajan, Soundappan ;
Chen, Shen-Ming .
ELECTROANALYSIS, 2010, 22 (06) :680-687
[44]   Influence of silver nanoparticles on food components in wheat [J].
Nawrocka, A. ;
Ciesla, J. .
INTERNATIONAL AGROPHYSICS, 2013, 27 (01) :49-55
[45]   INFLUENCE OF DIFFERENT PLANTS EXTRACTS ON SILVER NANOPARTICLES GREEN SYNTHESIS [J].
Velgosova, O. ;
Mrazikova, A. ;
Veselovsky, L. ;
Willner, J. ;
Fornalczyk, A. .
ARCHIVES OF METALLURGY AND MATERIALS, 2019, 64 (02) :665-670
[46]   Application of Hydroxylamine Sols of Silver Nanoparticles to Obtain Reference SERS Spectra [J].
Evtushenko, E. G. ;
Gavrilina, E. S. ;
Gusarova, D. Yu. ;
Vasileva, A. D. ;
Yurina, L. V. ;
Kurochkin, I. N. .
BULLETIN OF THE LEBEDEV PHYSICS INSTITUTE, 2023, 50 (SUPPL 5) :S547-S551
[47]   Application of Hydroxylamine Sols of Silver Nanoparticles to Obtain Reference SERS Spectra [J].
E. G. Evtushenko ;
E. S. Gavrilina ;
D. Yu. Gusarova ;
A. D. Vasil’eva ;
L. V. Yurina ;
I. N. Kurochkin .
Bulletin of the Lebedev Physics Institute, 2023, 50 :S547-S551
[48]   Synthesis and characterization comparison of peanut shell extract silver nanoparticles with commercial silver nanoparticles and their antifungal activity [J].
Velmurugan, Palanivel ;
Sivakumar, Subpiramaniyam ;
Young-Chae, Song ;
Seong-Ho, Jang ;
Pyoung-In, Yi ;
Jeong-Min, Suh ;
Sung-Chul, Hong .
JOURNAL OF INDUSTRIAL AND ENGINEERING CHEMISTRY, 2015, 31 :51-54
[49]   Irradiation of silver and agar/silver nanoparticles with argon, oxygen glow discharge plasma, and mercury lamp [J].
Ahmad, Mahmoud M. ;
Abdel-Wahab, Essam A. ;
El-Maaref, A. A. ;
Rawway, Mohammed ;
Shaaban, Essam R. .
SPRINGERPLUS, 2014, 3
[50]   Electrochemical formation of silver nanoparticles and their catalytic activity immobilised in a hydrogel matrix [J].
Fox, Catherine M. ;
Yu, Tian ;
Breslin, Carmel B. .
COLLOID AND POLYMER SCIENCE, 2020, 298 (06) :549-558