A unified interpretation of high-temperature pore size expansion processes in MCM-41 mesoporous silicas

被引:107
作者
Kruk, M
Jaroniec, M [1 ]
Sayari, A
机构
[1] Kent State Univ, Dept Chem, Kent, OH 44242 USA
[2] Univ Laval, Dept Chem Engn, Ste Foy, PQ G1K 7P4, Canada
[3] Univ Laval, CERPIC, Ste Foy, PQ G1K 7P4, Canada
关键词
D O I
10.1021/jp9844258
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
A unified interpretation is, presented for high-temperature (ca. 423 K) unit-cell enlargement of MCM-41 synthesized in the presence of cetyltrimethylammonium (CTMA(+)) surfactants without auxiliary organics. Such processes during postsynthesis hydrothermal treatments and direct syntheses were reported by several research groups to afford large-unit-cell (d spacing up to 7 nm) and large-pore (up to 7 nn) MCM-41 materials, but their structures were claimed to be different and the proposed mechanisms of the processes were not consistent with each other. The current study demonstrates significant structural similarities of large-pore MCM-41 materials-prepared using direct syntheses and postsynthesis treatments, reveals the common mechanism of their formation, and discusses its implications for preparation of large-pore materials, including new synthesis procedures. The proposed comprehensive description of the mechanism of the unit-cell-enlargement processes:involves the in situ generation of N,N-dimethylhexadecylamine (DMHA) and its swelling action as-a driving force of the pore size enlargement. The swelling properties of DMHA were confirmed by a successful synthesis of large-pore MCM-41 in mild conditions in the presence of DMHA and preparation of silicas: with pore sizes up to 11 nm and extremely large-pore volumes up to 2.4 cm(3)/g via restructuring of 3.5 nm MCM-41 in aqueous emulsions of long-chain amines (dimethyldecylamine or DMHA). The neutral amine is formed during the high-temperature processes-as a result of decomposition of CTMA(+) cations, which is likely to be accompanied by migration of tetramethylammonium cations (TMA(+)) to the silica-surfactant interface or is possibly related with replacement of CTMA(+) by TMA(+) at the interface. The reasons for the pore volume increase and surface area decrease during die pore size enlargement are discussed. Moreover, it is suggested that the unit-cell expansion-in the direction perpendicular to the pore channels is accompanied by. shrinkage of the structure in the direction parallel to the channels.
引用
收藏
页码:4590 / 4598
页数:9
相关论文
共 65 条
[51]  
Sayari A, 1998, ADV MATER, V10, P1376
[52]   Non-silica periodic mesostructured materials: recent progress [J].
Sayari, A ;
Liu, P .
MICROPOROUS MATERIALS, 1997, 12 (4-6) :149-177
[53]  
Sayari A, 1996, STUD SURF SCI CATAL, V102, P1
[54]   Characterization of large-pore MCM-41 molecular sieves obtained via hydrothermal restructuring [J].
Sayari, A ;
Liu, P ;
Kruk, M ;
Jaroniec, M .
CHEMISTRY OF MATERIALS, 1997, 9 (11) :2499-2506
[55]   Catalysis by crystalline mesoporous molecular sieves [J].
Sayari, A .
CHEMISTRY OF MATERIALS, 1996, 8 (08) :1840-1852
[56]  
SAYARI A, 1995, UNPUB
[57]   REPORTING PHYSISORPTION DATA FOR GAS SOLID SYSTEMS WITH SPECIAL REFERENCE TO THE DETERMINATION OF SURFACE-AREA AND POROSITY (RECOMMENDATIONS 1984) [J].
SING, KSW ;
EVERETT, DH ;
HAUL, RAW ;
MOSCOU, L ;
PIEROTTI, RA ;
ROUQUEROL, J ;
SIEMIENIEWSKA, T .
PURE AND APPLIED CHEMISTRY, 1985, 57 (04) :603-619
[58]   Experimental and theoretical investigations of adsorption hysteresis and criticality in MCM-41:: Studies with O2, Ar, and CO2 [J].
Sonwane, CG ;
Bhatia, SK ;
Calos, N .
INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 1998, 37 (06) :2271-2283
[59]   Evidence for supramolecular organization of alkane and surfactant molecules in the process of forming mesoporous silica [J].
Ulagappan, N ;
Rao, CNR .
CHEMICAL COMMUNICATIONS, 1996, (24) :2759-2760
[60]  
Vartuli JC, 1998, STUD SURF SCI CATAL, V117, P13