2015
DOI: 10.1016/j.apcata.2014.10.023
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Directing two azo-bridged covalent metalloporphyrinic polymers as highly efficient catalysts for selective oxidation

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Cited by 20 publications
(12 citation statements)
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References 39 publications
(46 reference statements)
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“…It means that, the Mn ion of Mn More important is that, the two actions resulted in the BE increment (dBE: 1.7 eV and 0.4 eV) of Mn ion in Mn TPFPP/mCS. This means that the Mn ion of Mn TPFPP/ mCS carried more positive charges to bind and activate oxygen molecules, exhibiting its higher catalytic activity than before 48 . Summarily, after grafting and coordinating Mn TPFPP to mCS, the other two of three internal influencing factors on the catalytic performance of Mn TPFPP/mCS had been modulated well.…”
Section: Resultsmentioning
confidence: 98%
See 1 more Smart Citation
“…It means that, the Mn ion of Mn More important is that, the two actions resulted in the BE increment (dBE: 1.7 eV and 0.4 eV) of Mn ion in Mn TPFPP/mCS. This means that the Mn ion of Mn TPFPP/ mCS carried more positive charges to bind and activate oxygen molecules, exhibiting its higher catalytic activity than before 48 . Summarily, after grafting and coordinating Mn TPFPP to mCS, the other two of three internal influencing factors on the catalytic performance of Mn TPFPP/mCS had been modulated well.…”
Section: Resultsmentioning
confidence: 98%
“…More important is that, the two actions resulted in the BE increment (dBE: 1.7 eV and 0.4 eV) of Mn ion in Mn TPFPP/mCS. This means that the Mn ion of Mn TPFPP/mCS carried more positive charges to bind and activate oxygen molecules, exhibiting its higher catalytic activity than before 48 .
Figure 4 XPS spectra of Mn 2p, N 1 s and Cl 2p for mCS, Mn TPFPP, and Mn TPFPP/mCS.
…”
Section: Resultsmentioning
confidence: 98%
“…This class of bioinspired N-ligands, for instance metalloporphyrins, which allow the selective epoxidation of olefins with multiple scaffolds has, however, an intrinsic instability problem, as it is considered to be one of the main drawbacks for the implementation of these epoxide synthetic processes to the pharmaceutical industrial scale. Nevertheless, strategies to overcome this issue, such as the immobilization of metalloporphyrins onto solid supports, namely polymers [45,46,47], clays [48], silica [49,50], mesoporous materials [51,52], or magnetic nanoparticles [43,53,54], is currently the target of particularly active research, as it is considered one of the most promising approaches.…”
Section: Introductionmentioning
confidence: 99%
“…1) Metalloporphyrins as active centers. Metalloporphyrins are recognized as well‐known analogs of the heme cofactor and most metalloenzymes, which have been extensively used as oxidation catalysts in the fine‐chemicals syntheses of epoxides, alcohols, ketones, and aldehydes …”
Section: Introductionmentioning
confidence: 99%