Molecular Optimization of Multiply-Functionalized Mesoporous Films with Ion Conduction Properties

被引:8
作者
Athens, George L. [1 ]
Kim, Donghun [1 ]
Epping, Jan D. [1 ]
Cadars, Sylvian [1 ]
Ein-Eli, Yair [2 ]
Chmelka, Bradley F. [1 ]
机构
[1] Univ Calif Santa Barbara, Dept Chem Engn, Santa Barbara, CA 93106 USA
[2] Technion Israel Inst Technol, Dept Mat Engn, IL-32000 Haifa, Israel
关键词
HIGH-TEMPERATURE; THIN-FILMS; TRIFLUOROMETHANESULFONIC ACID; HETEROGENEOUS CATALYSTS; PROTON CONDUCTIVITY; ORGANIC GROUPS; SILICA FILMS; WATER-UPTAKE; MEMBRANES; NAFION;
D O I
10.1021/ja2038529
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Sequential processing of multiply functionalized mesoporous films is shown to yield materials that are compositionally and structurally heterogeneous on mesoscopic and molecular length both of which must be controlled to optimize macroscopic ion-conduction properties. Cubic mesoporous silica films prepared from strongly acidic solutions were subsequently functionalized under highly alkaline conditions to incorporate hydrophilic aluminosilica surface moieties, followed by nonaqueous conditions to introduce perfluorosulfonicacid surface groups. Such sequential combination of individually incompatible steps yielded stable mesoporous films with high surface hydrophilicities and strong acid functionalities that exhibited high proton conductivities (ca. 9 X 10(-2) S/cm) at elevated temperatures (120 degrees C). Molecular, mesoscopic, and macroscopic properties of the multiply functionalized films were monitored and correlated at each stage of the syntheses by nuclear magnetic resonance (NMR) spectroscopy, small-angle X-ray scattering (SAXS), transmission electron microscopy (TEM), elemental analysis, adsorption, and ion conductivity measurements. In particular, variable-temperature solid-state two-dimensional (2D) Al-27{H-1}, Si-29{H-1}, Al-27{F-19} and Si-29{F-19} HETeronuclear chemical-shift CORrelation (HETCOR) NMR spectra reveal separate surface adsorption and grafting sites for the different functional surface species within the mesopore channels. The hydrophilic aluminosilica and acidic fluoro-group loadings and interaction sites are demonstrated to be strongly affected by the different synthesis and functionalization treatments, which must be separately and collectively optimized to maximize the proton conductivities.
引用
收藏
页码:16023 / 16036
页数:14
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