Optimizing the Binding Energy of the Surfactant to Iron Oxide Yields Truly Monodisperse Nanoparticles

被引:34
作者
Dehsari, Hamed Sharifi [1 ]
Harris, Richard Anthony [2 ]
Ribeiro, Anielen Halda [1 ]
Tremel, Wolfgang [3 ]
Asadi, Kamal [1 ]
机构
[1] Max Planck Inst Polymer Res, Ackermannweg 10, D-55128 Mainz, Germany
[2] Univ Free State, Dept Phys, ZA-9300 Bloemfontein, South Africa
[3] Johannes Gutenberg Univ Mainz, Dept Chem, D-55122 Mainz, Germany
关键词
SIZE-CONTROLLED SYNTHESIS; SHAPE-CONTROLLED SYNTHESIS; THERMAL-DECOMPOSITION; MAGNETITE NANOPARTICLES; OLEIC-ACID; FACILE SYNTHESIS; PARTICLE-SIZE; HEATING RATE; MFE2O4; M; NANOCRYSTALS;
D O I
10.1021/acs.langmuir.8b01337
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Despite the great progress in the synthesis of iron oxide nanoparticles (NPs) using a thermal decomposition method, the production of NPs with low polydispersity index is still challenging. In a thermal decomposition synthesis, oleic acid (OAC) and oleylamine (OAM) are used as surfactants. The surfactants bind to the growth species, thereby controlling the reaction kinetics and hence playing a critical role in the final size and size distribution of the NPs. Fmding an optimum molar ratio between the surfactants oleic OAC/OAM is therefore crucial. A systematic experimental and theoretical study, however, on the role of the surfactant ratio is still missing. Here, we present a detailed experimental study on the role of the surfactant ratio in size distribution. We found an optimum OAC/OAM ratio of 3 at which the synthesis yielded truly monodisperse (polydispersity less than 7%) iron oxide NPs without employing any post synthesis size-selective procedures. We performed molecular dynamics simulations and showed that the binding energy of oleate to the NP is maximized at an OAC/OAM ratio of 3. The optimum OAC/ OAM ratio of 3 is allowed for the control of the NP size with nanometer precision by simply changing the reaction heating rate. The optimum OAC/OAM ratio has no influence on the crystallinity and the superparamagnetic behavior of the Fe3O4 NPs and therefore can be adopted for the scaled-up production of size-controlled monodisperse Fe3O4 NPs.
引用
收藏
页码:6582 / 6590
页数:9
相关论文
共 71 条
[1]  
[Anonymous], 1974, XRAY DIFFRACTION PRO
[2]   A biotechnological perspective on the application of iron oxide nanoparticles [J].
Assa, Farnaz ;
Jafarizadeh-Malmiri, Hoda ;
Ajamein, Hossein ;
Anarjan, Navideh ;
Vaghari, Hamideh ;
Sayyar, Zahra ;
Berenjian, Aydin .
NANO RESEARCH, 2016, 9 (08) :2203-2225
[3]   Magnetic Iron Oxide Nanoparticles: Reproducible Tuning of the Size and Nanosized-Dependent Composition, Defects, and Spin Canting [J].
Baaziz, Walid ;
Pichon, Benoit P. ;
Fleutot, Solenne ;
Liu, Yu ;
Lefevre, Christophe ;
Greneche, Jean-Marc ;
Toumi, Mohamed ;
Mhiri, Tahar ;
Begin-Colin, Sylvie .
JOURNAL OF PHYSICAL CHEMISTRY C, 2014, 118 (07) :3795-3810
[4]   A new approach to follow the formation of iron oxide nanoparticles synthesized by thermal decomposition [J].
Belaid, Sarah ;
Laurent, Sophie ;
Vermeech, Marjorie ;
Vander Elst, Luce ;
Perez-Morga, David ;
Muller, Robert N. .
NANOTECHNOLOGY, 2013, 24 (05)
[5]   Synthesis and surface modification of uniform MFe2O4 (M = Fe, Mn, and Co) nanoparticles with tunable sizes and functionalities [J].
Cabrera, Lourdes I. ;
Somoza, Alvaro ;
Marco, Jose F. ;
Serna, Carlos J. ;
Puerto Morales, M. .
JOURNAL OF NANOPARTICLE RESEARCH, 2012, 14 (06)
[6]   Multigram scale, solventless, and diffusion-controlled route to highly monodisperse PbS nanocrystals [J].
Cademartiri, L ;
Bertolotti, J ;
Sapienza, R ;
Wiersma, DS ;
von Freymann, G ;
Ozin, GA .
JOURNAL OF PHYSICAL CHEMISTRY B, 2006, 110 (02) :671-673
[7]   Facile synthesis of superparamagnetic magnetite nanoparticles in liquid polyols [J].
Cai, Wei ;
Wan, Jiaqi .
JOURNAL OF COLLOID AND INTERFACE SCIENCE, 2007, 305 (02) :366-370
[8]   Fe3O4 nanoparticles prepared by the seeded-growth route for hyperthermia: electron magnetic resonance as a key tool to evaluate size distribution in magnetic nanoparticles [J].
Castellanos-Rubio, Idoia ;
Insausti, Maite ;
Garaio, Eneko ;
de Muro, Izaskun Gil ;
Plazaola, Fernando ;
Rojo, Teofilo ;
Lezama, Luis .
NANOSCALE, 2014, 6 (13) :7542-7552
[9]   Size and Shape Controllable Synthesis of Monodisperse Iron Oxide Nanoparticles by Thermal Decomposition of Iron Oleate Complex [J].
Chen, Zhongping .
SYNTHESIS AND REACTIVITY IN INORGANIC METAL-ORGANIC AND NANO-METAL CHEMISTRY, 2012, 42 (07) :1040-1046
[10]   Reagent control over the size, uniformity, and composition of Co-Fe-O nanoparticles [J].
Crouse, Christopher A. ;
Barron, Andrew R. .
JOURNAL OF MATERIALS CHEMISTRY, 2008, 18 (35) :4146-4153