In situ platelets formation into aqueous polymer colloids: The topochemical transformation from single to double layered hydroxide (LSH-LDH) uncovered

被引:12
作者
Stimpfling, Thomas [1 ]
Langry, Arthur [1 ]
Hintze-Bruening, Horst [2 ]
Leroux, Fabrice [1 ]
机构
[1] Univ Blaise Pascal, Univ Clermont Auvergne, ICCF, UMR CNRS 6296, F-63171 Aubiere, France
[2] BASF Coatings GmbH, D-48165 Munster, Germany
关键词
Layered structure; Topochemical transformation; Polymer nanocomposite; Platelets intercalation versus exfoliation; Solid state kinetics; HYDROTALCITE-LIKE COMPOUNDS; X-RAY-DIFFRACTION; ALUMINUM HYDROXYCARBONATE; MAGNESIUM-HYDROXIDE; GAMMA-ALUMINA; SURFACE PRECIPITATION; ANION-EXCHANGE; NEUTRAL PH; NANOSHEETS; COBALT;
D O I
10.1016/j.jcis.2015.10.010
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
Layered Single Hydroxide (LSH) of chemical composition Zn-5(OH)(8)(acetate)(2)center dot nH(2)O is synthesized under in situ condition in an aqueous dispersion of an amphiphilic, carboxylate bearing polyester via a modified polyol route. The one-pot LSH generation yields agglomerates of well intercalated platelets, 9-10 nm separated from each other. However the corresponding Layered Double Hydroxide (LDH) of formal composition Zn2Al(OH)(6) (acetate)center dot nH(2)O is found to proceed via the formation of crystallized, similarly spaced LSH sheets in the neighborhood of amorphous Al rich domains as evidenced by X-ray diffraction and transmission electron micrographs. The initial phase segregation effaces over time while LSH platelets convert into the LDH phase. Fingerprinted by the change of in-plane cation accommodation, the associated topochemical reaction of the edge-sharing octahedral LSH platelets involves the transformation of metal lacunae, adjacently covered by one tetrahedral coordinated cation on each side to balance the negative surcharge, into fully occupied and monolayered platelets of edge-sharing octahedral LDH, the former voids being occupied by trivalent cations. This replenishing process of empty sites, coupled with the dissolution of tetrahedral sites is likely to be observed for the first time due to the presence of well separated, polymer intercalated platelets. TEM pictures vision crystal growth arising from the zone of the LSH edge-slab and by using solid state kinetics formalism the associated high activation energy of the first-order reaction agrees well with a plausible dissolution re-precipitation mechanism. The conversion of LSH into LDH platelets may be extended to other cations as Co2+, Cu2+, as well as the aluminum source (AlCl3) and the water-soluble polymer (NVP), thus indicating it is a new prevalent facet of LDH. (C) 2015 Elsevier Inc. All rights reserved.
引用
收藏
页码:260 / 271
页数:12
相关论文
共 70 条
[1]  
Bergaya F., HDB CLAY SCI A
[2]   Synthesis and structure of the gibbsite intercalation compounds [LiAl2(OH)(6)]X {X=Cl, Br, NO3} and [LiAl2(OH)(6)]Cl center dot H2O using synchrotron X-ray and neutron powder diffraction [J].
Besserguenev, AV ;
Fogg, AM ;
Francis, RJ ;
Price, SJ ;
OHare, D ;
Isupov, VP ;
Tolochko, BP .
CHEMISTRY OF MATERIALS, 1997, 9 (01) :241-247
[3]   Layered double hydroxide stability. 1. Relative stabilities of layered double hydroxides and their simple counterparts [J].
Boclair, JW ;
Braterman, PS .
CHEMISTRY OF MATERIALS, 1999, 11 (02) :298-302
[4]   Layered double hydroxide stability. 2. Formation of Cr(III)-containing layered double hydroxides directly from solution [J].
Boclair, JW ;
Braterman, PS ;
Jiang, JP ;
Lou, SW ;
Yarberry, F .
CHEMISTRY OF MATERIALS, 1999, 11 (02) :303-307
[5]  
Boldyrev V. V., 1990, Reactivity of Solids, V8, P231, DOI 10.1016/0168-7336(90)80023-D
[6]   Highly Fluorescent and Stable Quantum Dot-Polymer-Layered Double Hydroxide Composites [J].
Cho, Seungho ;
Kwag, Jungheon ;
Jeong, Sanghwa ;
Baek, Yeonggyeong ;
Kim, Sungjee .
CHEMISTRY OF MATERIALS, 2013, 25 (07) :1071-1077
[7]   Intra- and inter-layer structures of layered hydroxy double salts, Ni1-xZn2x(OH)2(CH3CO2)2x•nH2O [J].
Choy, JH ;
Kwon, YM ;
Han, KS ;
Song, SW ;
Chang, SH .
MATERIALS LETTERS, 1998, 34 (3-6) :356-363
[8]  
Costantino U., 2013, Handbook of Clay Science, P765
[9]   Reversible Topochemical Exsolution of Iron in BaFe22+(PO4)2 [J].
David, Renald ;
Kabbour, Houria ;
Filimonov, Dmitry ;
Huve, Marielle ;
Pautrat, Alain ;
Mentre, Olivier .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2014, 53 (49) :13365-13370
[10]  
DELACAILLERIE JBD, 1995, J AM CHEM SOC, V117, P11471