Nonclassical Growth Mechanism of Double-Walled Metal-Oxide Nanotubes Implying Transient Single-Walled Structures

被引:0
作者
Paineau, Erwan [1 ]
Bourdelle, Franck [2 ]
Bhandary, Rajesh [1 ,7 ]
Truche, Laurent [3 ]
Lorgeoux, Catherine [4 ]
Bacia-Verloop, Maria [5 ]
Monet, Geoffrey [1 ,8 ]
Rouziere, Stephan [1 ]
Vantelon, Delphine [6 ]
Briois, Valerie [6 ]
Launois, Pascale [1 ]
机构
[1] Univ Paris Saclay, CNRS, Lab Phys Solides, F-91405 Orsay, France
[2] CY Cergy Paris Univ, GEC Lab Geosci & Environm Cergy, F-95000 Neuville Sur Oise, France
[3] Univ Grenoble Alpes, CNRS, ISTerre, CS 40700, F-38058 Grenoble, France
[4] Univ Lorraine, GeoRessources, UMR 7359, CNRS, Campus Aiguillettes, F-54506 Vandoeuvre Les Nancy, France
[5] Univ Grenoble Alpes, Inst Biol Structurale, CNRS, CEA, F-38027 Grenoble, France
[6] Synchrotron Soleil, F-91192 Gif Sur Yvette, France
[7] Martin Luther Univ Halle Wittenberg, Macromol Chem, Div Tech & Macromol Chem, Fac Nat Sci Chem Phys & Math 2,Inst Chem, von Danckelmann Pl 4, D-06120 Halle, Germany
[8] Univ Paris, Univ PSL, Sorbonne Univ, Lab Phys Ecole Normale Super,ENS,CNRS, F-75005 Paris, France
关键词
growth mechanism; imogolite; in situ monitoring; multiscale approach; synthesis; RAY-ABSORPTION SPECTROSCOPY; MULTIVARIATE CURVE RESOLUTION; IMOGOLITE NANOTUBES; DEGREES-C; ALUMINUM; WATER; IRON; NANOFLUIDICS; SOLUBILITY; PRECURSORS;
D O I
10.1002/smll.202308665
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The formation of imogolite nanotubes is reported to be a kinetic process involving intermediate roof-tile nanostructures. Here, the structural evolution occurring during the synthesis of aluminogermanate double-walled imogolite nanotubes is in situ monitored, thanks to an instrumented autoclave allowing the control of the temperature, the continuous measurement of pH and pressure, and the regular sampling of gas and solution. Chemical analyses confirm the completion of the precursor's conversion with the release of CO2, ethanol, and dioxane as main side products. The combination of microscopic observations, infrared, and absorption spectroscopies with small and wide-angle X-ray scattering experiments unravel a unique growth mechanism implying transient single-walled nanotubes instead of the self-assembly of stacked proto-imogolite tiles. The growth formation of these transient nanotubes is followed at the molecular level by Quick-X-ray absoprtion specotrscopy experiments. Multivariate data analysis evidences that the near neighboring atomic environment of Ge evolves from monotonous to a more complex one as the reaction progresses. The following transformation into a double-walled nanotube takes place at a nearly constant mean radius, as demonstrated by the simulation of X-ray scattering diagrams. Overall, transient nanotubes appear to serve for the anchoring of a new wall, corresponding to a mechanism radically different from that proposed in the literature. The growth mechanism during the synthesis of double-walled (DW) imogolite nanotubes is described, thanks to an instrumented autoclave. The sampling during the synthesis enables to trap unexpected single-walled nanotubes that further convert into DW ones. This nonclassical growth mechanism by transient nanotubes is radically different from that proposed in the literature since inorganic nanotubes are usually formed from 2D materials.image
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页数:12
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