TY - JOUR
T1 - A novel inorganic-organic hybrid complex between polyoxometalate and cyclodextrin
T2 - Synthesis, structure and catalytic activity
AU - Fan, Yan Xuan
AU - Lu, Shi Fang
AU - Cao, Jie
N1 - Publisher Copyright:
© 2018 Elsevier B.V.
PY - 2019/1
Y1 - 2019/1
N2 - A novel non-covalent hybrid complex formed between silicotungstic acid (H4SiW12O40, SiW12, an abbreviation also for [SiW12O40]4−) and γ-cyclodextrin (γ-CD) was investigated by means of electrospray ionization tandem mass spectrometry (ESI-MS/MS) and proton nuclear magnetic resonance spectroscopy (1H NMR). The experimental results showed that stable noncovalent complexes existing in equilibrium, [SiW12 + (γ-CD)m]4− (m = 1, 2, and 3), can be formed in solution where the predominant species is the 1:1 complex. The significant chemical shift changes for the inner-cavity H-5 protons and the H-6/6′ protons on the primary faces of the CD torus in 1H NMR titration revealed that SiW12 probably interacts with the primary faces of γ-CD through intermolecular hydrogen-bonding interactions. The gas-phase fragmentation of [SiW12 + (γ-CD)m]4− showed that a proton can be transferred from γ-CD to SiW12 within the complex upon dissociation, leading to a pair of anionic products, [HSiW12 + (γ-CD)m-1]3- and [γ-CD – H]-, providing further evidence for the nature of the intermolecular interactions. The solid 1:1 adduct catalyst SiW12/γ-CD obtained by vapor diffusion method was then used in the epoxidation of cyclooctene to cyclooctene oxide with H2O2 as oxidant as a comparison with SiW12 alone. The result showed that the catalytic performance of SiW12/γ-CD is superior to SiW12 (SiW12/γ-CD is about 10 times better than SiW12), serving as the best example to demonstrate the synergistic catalysis arising from the supramolecular catalyst.
AB - A novel non-covalent hybrid complex formed between silicotungstic acid (H4SiW12O40, SiW12, an abbreviation also for [SiW12O40]4−) and γ-cyclodextrin (γ-CD) was investigated by means of electrospray ionization tandem mass spectrometry (ESI-MS/MS) and proton nuclear magnetic resonance spectroscopy (1H NMR). The experimental results showed that stable noncovalent complexes existing in equilibrium, [SiW12 + (γ-CD)m]4− (m = 1, 2, and 3), can be formed in solution where the predominant species is the 1:1 complex. The significant chemical shift changes for the inner-cavity H-5 protons and the H-6/6′ protons on the primary faces of the CD torus in 1H NMR titration revealed that SiW12 probably interacts with the primary faces of γ-CD through intermolecular hydrogen-bonding interactions. The gas-phase fragmentation of [SiW12 + (γ-CD)m]4− showed that a proton can be transferred from γ-CD to SiW12 within the complex upon dissociation, leading to a pair of anionic products, [HSiW12 + (γ-CD)m-1]3- and [γ-CD – H]-, providing further evidence for the nature of the intermolecular interactions. The solid 1:1 adduct catalyst SiW12/γ-CD obtained by vapor diffusion method was then used in the epoxidation of cyclooctene to cyclooctene oxide with H2O2 as oxidant as a comparison with SiW12 alone. The result showed that the catalytic performance of SiW12/γ-CD is superior to SiW12 (SiW12/γ-CD is about 10 times better than SiW12), serving as the best example to demonstrate the synergistic catalysis arising from the supramolecular catalyst.
KW - Electrospray tandem mass spectrometry
KW - Non-covalent interactions
KW - Silicotungstic acid
KW - γ-Cyclodextrin
UR - https://www.scopus.com/pages/publications/85055627547
U2 - 10.1016/j.ijms.2018.09.030
DO - 10.1016/j.ijms.2018.09.030
M3 - Article
AN - SCOPUS:85055627547
SN - 1387-3806
VL - 435
SP - 163
EP - 167
JO - International Journal of Mass Spectrometry
JF - International Journal of Mass Spectrometry
ER -