Wrapping and inclusion of organic molecules with ultrathin, amorphous metal oxide films

被引:21
作者
Ichinose, I [1 ]
Kunitake, T [1 ]
机构
[1] RIKEN, Inst Phys & Chem Res, Frontier Res Syst, Topochem Design Lab, Wako, Saitama 3510198, Japan
关键词
template synthesis; nanostructures; amorphous metal oxides; ultrathin films; molecular wrapping;
D O I
10.1002/tcr.10032
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
In this review, we overview metal oxide nanostructures in which organic molecules play important roles as templates, as structural units, and, in some cases, as hosts. Their structural precision and diversity are discussed from the viewpoint of the topology of a metal-oxygen network. Supramolecular capsules of metal oxides are prepared by the self-assembly of polyoxometalates. Zeolites and mesoporous materials are synthesized by using organic molecules with their assemblies acting as templates. The topological networking of silsesquioxanes makes it possible to produce novel nanocomposites and microporous materials. In the final section, we demonstrate our recent studies into molecular imprinting, the encapsulation of a fluorescent dye, and the wrapping of individual polymer chains. Ultrathin, amorphous metal oxide films can retain the shape of organic molecules and can be used to create molecular composites by precisely wrapping individual molecules. These films are also effective in insulating molecular functions from external environments. The advantages of amorphous metal oxides are discussed in relation to the properties of the corresponding crystalline metal oxides and their potential prospects in nanotechnology. (C) 2002 The Japan Chemical Journal Forum and Wiley Periodicals, Inc.
引用
收藏
页码:339 / 351
页数:13
相关论文
共 50 条
[31]   Sensing using nanostructured metal oxide thin films [J].
Kiriakidis, G. ;
Dovinos, D. ;
Suchea, M. .
NANOMATERIAL SYNTHESIS AND INTEGRATION FOR SENSORS, ELECTRONICS, PHOTONICS, AND ELECTRO-OPTICS, 2006, 6370
[32]   Growth and structural characterisation of vanadium oxide ultrathin films on TiO2 (110) [J].
Sambi, M ;
Della Negra, M ;
Granozzi, G .
THIN SOLID FILMS, 2001, 400 (1-2) :26-36
[33]   Metal Oxide Thin Films Prepared by Magnetron Sputtering Technology for Volatile Organic Compound Detection in the Microwave Frequency Range [J].
Rydosz, Artur ;
Brudnik, Andrzej ;
Staszek, Kamil .
MATERIALS, 2019, 12 (06)
[34]   Thin cobalt oxide films for catalysis deposited by plasma-enhanced metal-organic chemical vapor deposition [J].
Tyczkowski, J. ;
Kapica, R. ;
Lojewska, J. .
THIN SOLID FILMS, 2007, 515 (16) :6590-6595
[35]   Nanopatterning of thin amorphous vanadium oxide films by oxidation scanning probe lithography [J].
Komonov, A. I. ;
Mantsurov, N. D. ;
Voloshin, B. V. ;
Seleznev, V. A. ;
Mutilin, S., V .
APPLIED SURFACE SCIENCE, 2024, 658
[36]   Identification of O-rich structures on platinum(111)-supported ultrathin iron oxide films [J].
Merte, Lindsay R. ;
Bai, Yunhai ;
Zeuthen, Helene ;
Peng, Guowen ;
Lammich, Lutz ;
Besenbacher, Flemming ;
Mavrikakis, Manos ;
Wendt, Stefan .
SURFACE SCIENCE, 2016, 652 :261-268
[37]   Organic reaction pathways in the nonaqueous synthesis of metal oxide nanoparticles [J].
Niederberger, Markus ;
Garnweitner, Georg .
CHEMISTRY-A EUROPEAN JOURNAL, 2006, 12 (28) :7282-7302
[38]   Recent status of chemical bath deposited metal chalcogenide and metal oxide thin films [J].
Pawar, S. M. ;
Pawar, B. S. ;
Kim, J. H. ;
Joo, Oh-Shim ;
Lokhande, C. D. .
CURRENT APPLIED PHYSICS, 2011, 11 (02) :117-161
[39]   Cobalt-Cluster-Triggered Exfoliation for Ultrathin Metal-Covalent Organic Framework Nanosheets [J].
Jiang, Xinzhu ;
Qu, Xinyue ;
Chen, Yucong ;
Li, Xiang ;
Wang, Shi ;
Tang, Rui ;
Luo, Jie ;
Ding, Baofu ;
Zhang, Gen ;
Qiu, Ling .
ACS NANO, 2025, 19 (09) :9216-9224
[40]   Synthesis of microporous transition metal oxide molecular sieves with bifunctional templating molecules [J].
Sun, T ;
Ying, JY .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 1998, 37 (05) :664-667