Colorimetric fluoride ion sensing by boron-containing π-electron systems

被引:541
|
作者
Yamaguchi, S [1 ]
Akiyama, S [1 ]
Tamao, K [1 ]
机构
[1] Kyoto Univ, Chem Res Inst, Kyoto 6110011, Japan
关键词
D O I
10.1021/ja015957w
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The boron-containing 7-conjugated systems, including Lri(9-anthryl)borane (1) and tris[(10-dimesitylboryl)-9-anthryl]borane (2). have been investigated as a new type of fluoride chemosensor. Upon complexation of I with a fluoride ion, a significant color change from orange to colorless was observed and, in the UV-visible absorption spectra, the characteristic band of 1 at 470 rim disappeared and new bands around 360-400 nm assignable to pi-pi* transitions of the anthryl moieties were observed. This change can be rationalized as a result of the interruption of the pi -conjugation extended through the vacant p-orbital of the boron atom by the formation of the corresponding fluoroborate. The binding constant of compound I with the fluoride ion was quite high [(2.8 +/- 0.3) x 10(5) M-1], whereas 1 only showed small binding constants with AcO- and OH- of around 10(3) M-1 and no sensitivity to other halide ions such as Cl-, Br-, and I-, thus demonstrating its selective sensing ability to the fluoride ion. In contrast to the monoboron system 1, compound 2 having four boron atoms showed multistage changes in the absorption spectra by the stepwise complexation with fluoride ions.
引用
收藏
页码:11372 / 11375
页数:4
相关论文
共 50 条
  • [41] Ring Expansion Reactions of Electron-Rich Boron-Containing Heterocycles
    Araneda, Juan F.
    Piers, Warren E.
    Sgro, Michael J.
    Parvez, Masood
    ORGANOMETALLICS, 2015, 34 (13) : 3408 - 3413
  • [42] Boron-Containing Monopyrrolo-Annelated Tetra thiafulvalene Compounds: Synthesis and Absorption Spectral/Electrochemical Responsiveness toward Fluoride Ion
    Li, Jing
    Zhang, Guanxin
    Zhang, Deqing
    Zheng, Renhui
    Shi, Qiang
    Zhu, Daoben
    JOURNAL OF ORGANIC CHEMISTRY, 2010, 75 (15): : 5330 - 5333
  • [43] Boron and Boron-Containing Catalysts for the Oxidative Dehydrogenation of Propane
    Grant, Joseph T.
    McDermott, William P.
    Venegas, Juan M.
    Burt, Samuel P.
    Micka, Jack
    Phivilay, Somphonh P.
    Carrero, Carlos A.
    Hermans, Ive
    CHEMCATCHEM, 2017, 9 (19) : 3623 - 3626
  • [44] Nanoscaled boron-containing delivery systems and therapeutic agents for cancer treatment
    Wang, Jing
    Wu, Wei
    Jiang, Xiqun
    NANOMEDICINE, 2015, 10 (07) : 1149 - 1163
  • [45] Calculation of hardenability of boron-containing steels
    Nosov, V.B.
    Yurasov, S.A.
    Metallovedenie i Termicheskaya Obrabotka Metallov, 1995, (03): : 19 - 22
  • [46] Synthesis of oligomeric boron-containing phosphopolyols
    Bondarenko, S. N.
    Khohlova, T. V.
    Orlova, S. A.
    Tuzhikov, O. I.
    RUSSIAN JOURNAL OF GENERAL CHEMISTRY, 2006, 76 (07) : 1055 - 1058
  • [47] New boron-containing 2′-deoxyadenosines
    A. A. Ilinova
    V. I. Bregadze
    A. N. Bogomazova
    I. A. Lobanova
    A. F. Mironov
    A. A. Semioshkin
    Russian Chemical Bulletin, 2013, 62 : 1115 - 1119
  • [48] CYTOTOXICITY OF BORON-CONTAINING DIPEPTIDE ANALOGS
    KARTHIKEYAN, S
    SOOD, A
    TOMASZ, J
    SPIELVOGEL, BF
    HALL, IH
    AMINO ACIDS, 1995, 8 (04) : 323 - 335
  • [49] Boron-containing carbonic anhydrases inhibitors
    Giovannuzzi, Simone
    Nikitjuka, Anna
    Resende, Bruna Rafaela Pereira
    Smietana, Michael
    Nocentini, Alessio
    Supuran, Claudiu T.
    Winum, Jean-Yves
    BIOORGANIC CHEMISTRY, 2024, 143
  • [50] New boron-containing 2′-deoxyadenosines
    Ilinova, A. A.
    Bregadze, V. I.
    Bogomazova, A. N.
    Lobanova, I. A.
    Mironov, Aa. F.
    Semioshkin, A. A.
    RUSSIAN CHEMICAL BULLETIN, 2013, 62 (04) : 1115 - 1119