Metal coordination to amphiphilic Ru complexes at the air-water interface

被引:21
|
作者
Haga, M
Kato, N
Monjushiro, H
Wang, KZ
Hossain, MD
机构
[1] Chuo Univ, Dept Appl Chem, Bunkyo Ku, Tokyo 1128551, Japan
[2] Inst Mol Sci, Coordinat Chem Labs, Okazaki, Aichi 444, Japan
来源
SUPRAMOLECULAR SCIENCE | 1998年 / 5卷 / 3-4期
关键词
amphiphilic ruthenium complexes; Langmuir-Blodgett film; metal coordination at the air-water interface;
D O I
10.1016/S0968-5677(98)00028-5
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
We have examined the applicability of metal complex as a ligand' strategy at the interface by using the Ru complexes acting as a ligand. New amphiphilic ruthenium complexes containing 2,6-bis(1-octadecylbenzimidazolyl)-pyridine (L18), [Ru(L18)(X)](2+) were synthesized, where X = 2,3,5,6-tetrakis(2'-pyridyl)pyrazine (tppz) and 1,4-bis(2,2':6',2 "-terpyridine-4'-yl)benzene (bteb), in which the bis-tridentate ligand (tppz or bteb) of [Ru(L18)(X)](2+) can act not only as a hydrophilic head group but also as a coordination site to a metal ion from the subphase at the air-water interface. These amphiphilic Ru complexes lead to a stable Langmuir-Blodgett (LB) film formation. The incorporation of metal ion from subphase at the air-water interface was proved by the measurements of pi-A isotherms, UV spectra and angular dependent XPS spectra. (C) 1998 Published by Elsevier Science Limited. All rights reserved.
引用
收藏
页码:337 / 342
页数:6
相关论文
共 50 条
  • [31] Molecular recognition under formation of amphiphilic amidinium carboxylates at the air-water interface
    Siegel, S
    Kindermann, M
    Vollhardt, D
    TRENDS IN COLLOID AND INTERFACE SCIENCE XV, 2001, 118 : 34 - 37
  • [32] Langmuir monolayers of amphiphilic PET/PEO block copolymers at air-water interface
    Yang Hongwei
    Zhu Puxin
    Yao Yongyi
    Gao Xushan
    Li Ruixia
    Wu Dacheng
    ACTA POLYMERICA SINICA, 2007, (01) : 93 - 96
  • [33] Surface phase separation in an amphiphilic block copolymer monolayer at the air-water interface
    Richards, RW
    Rochford, BR
    Webster, JRP
    POLYMER, 1997, 38 (05) : 1169 - 1177
  • [34] Sheet-Like Assemblies of Charged Amphiphilic α/β-Peptides at the Air-Water Interface
    Segman-Magidovich, Shlomit
    Lee, Myung-ryul
    Vaiser, Vladimir
    Struth, Bernd
    Gellman, Samuel H.
    Rapaport, Hanna
    CHEMISTRY-A EUROPEAN JOURNAL, 2011, 17 (52) : 14857 - 14866
  • [35] Amphiphilic cyclic fullerene bisadducts: Synthesis and Langmuir films at the air-water interface
    Nierengarten, JF
    Schall, C
    Nicoud, JF
    Heinrich, B
    Guillon, D
    TETRAHEDRON LETTERS, 1998, 39 (32) : 5747 - 5750
  • [36] Selective inclusion of naphthalene derivatives by monolayers of amphiphilic cyclodextrins at the air-water interface
    Nakahara, H
    Tanaka, H
    Fukuda, K
    Matsumoto, M
    Tagaki, W
    THIN SOLID FILMS, 1996, 284 : 687 - 690
  • [37] Morphology transition and slow dynamics in the collapse of amphiphilic monolayers at the air-water interface
    Hatta, E
    Suzuki, D
    Nagao, J
    EUROPEAN PHYSICAL JOURNAL B, 1999, 11 (04): : 609 - 614
  • [38] Organization of an amphiphilic graft copolymer at the air-water interface: a neutron reflectometry study
    Univ of Durham, Durham, United Kingdom
    Macromolecules, 4 (1261-1268):
  • [39] Absolute orientation of molecules of amphiphilic alcohols in crystalline monolayers at the air-water interface
    Edgar, R
    Huang, JY
    Popovitz-Biro, R
    Kjaer, K
    Bouwman, WG
    Howes, PB
    Als-Nielsen, J
    Shen, YR
    Lahav, M
    Leiserowitz, L
    JOURNAL OF PHYSICAL CHEMISTRY B, 2000, 104 (29): : 6843 - 6850
  • [40] Organization of well-defined amphiphilic graft copolymers at the air-water interface
    Miller, AF
    Richards, RW
    Webster, JRP
    MACROMOLECULES, 2000, 33 (20) : 7618 - 7628