| Literature DB >> 32103004 |
Chao Liu1, Kunhui Liu2, Chiming Wang1, Heyuan Liu3, Hailong Wang4, Hongmei Su2, Xiyou Li3, Banglin Chen5, Jianzhuang Jiang6.
Abstract
The investigation on the catalytic properties of porous organic cages is still in an initial stage. Herein, the reaction of cyclohexanediamine withEntities:
Year: 2020 PMID: 32103004 PMCID: PMC7044162 DOI: 10.1038/s41467-020-14831-x
Source DB: PubMed Journal: Nat Commun ISSN: 2041-1723 Impact factor: 14.919
Fig. 1Synthesis of tubular porphyrin organic cage.
The synthetic route of PTC-1(2H) includes Suzuki–Miyaura cross-coupling between 5-bromoisophthalaldehyde and 5,15-bis[4-(4,4,5,5-tetramethyl-1,3,2-dioxaborolan-2-yl)phenyl]porphyrin (H2BTPP) together with imine condensation reaction of enantiomerically pure cyclohexanediamine with 5,15-di[3’,5’-diformyl-(1,1’-biphenyl)]porphyrin (H2DBPP).
Photophysical and electrochemical data for H2CBPP and PTC-1(2H).
| Compound | UV/vis spectra in toluene | fluorescence spectra in toluene | |||
|---|---|---|---|---|---|
| PTC-1(2H) | 397, 506, 542, 580, 635 | 405 | 638, 702 | 9.80 | 1.82 |
| H2CBPP | 412, 504, 540, 579, 635 | 405 | 638, 700 | 9.87 | 1.86 |
aIn CH2Cl2.
bIn N2.
cIn air.
Fig. 2Single crystal structure of molecular organic cage (R)-PTC-1(2H).
a Side view and b top view; c window-to-window stacking mode of neighboring molecular organic cages; d packing profile along the direction of [001] (porphyrin C, gray; cyclohexanediamine C, red; N, blue; H, green; yellow tubes and balls represent the open one-dimensional channel and window, respectively; all selected hydrogen atoms omitted for clarity).
Fig. 3N2 sorption isotherms of PTC-1(2H) at 77 K.
Source data are provided as a Source Data file.
Fig. 4Homogeneous photophysical and photocatalytic behaviors of PTC-1(2H).
a Nanosecond transient absorption spectra for a toluene solution of PTC-1(2H) excited upon 355 nm laser pulse under nitrogen condition; b normalized kinetic traces of the 450 nm band of PTC-1(2H) and H2CBPP under nitrogen condition; c time-dependent absorption spectra of DPBF in DMF upon visible light irradiation (λ > 510 nm) in the presence of PTC-1(2H); d comparison of absorbance decay rate at 416 nm of DPBF in the presence of different catalysts. Source data are provided as a Source Data file.
Homogeneous visible light oxidative coupling of various amines into iminesa.
| Entry | Catalyst | Atmosphere | Conv. (%)b | TOFc | |
|---|---|---|---|---|---|
| 1 | — | O2 | 15.0 | Trace | — |
| 2 | PTC-1(2H) | O2 | 15.0 | >99 | 1320 |
| 3 | PTC-1(2H) | Air | 20.0 | >99 | 990 |
| 4 | PTC-1(2H) | N2 | 15.0 | Trace | — |
| 5d | PTC-1(2H) | O2 | 15.0 | Trace | — |
| 6e | H2CBPP | O2 | 20.0 | >99 | 990 |
| 7f | TPP | O2 | 25.0 | >99 | 790 |
| 8g | PTC-1(2H) | O2 | 15.0 | 10 | 130 |
| 9h | PTC-1(2H) | O2 | 15.0 | 90 | 1200 |
a0.10 mmol benzylamine, 0.10 μmol PTC-1(2H), 1.0 atm O2, 25 W blue LED (420 nm < λ < 490 nm), and 0.5 mL toluene-d8.
bDetermined by 1H NMR analysis every 5 min.
cTOF value was calculated by mmol of amine converted per mmol of porphyrin unit per hour.
dNo irradiation.
e3.00 μmol H2CBPP.
f3.00 μmol TPP.
g0.10 μmol PTC-1(2H) and 5.00 μmol triethylenediamine (DABCO).
h0.10 μmol PTC-1(2H) and 5.00 μmol benzoquinone (BQ).
Fig. 5Heterogeneous photocatalytic behavior of PTC-1(2H).
a Comparison of absorbance decay rate at 410 nm of DPBF in the presence of different photocatalysts in CH3CN upon visible light irradiation of λ > 510 nm; b ESR detection of 1O2 generation over PTC-1(2H) trapped by TEMP in CH3CN; c comparison of time-dependent heterogeneous catalytic efficiency of different photocatalysts; d recycle test of PTC-1(2H) in the photo-induced oxidative coupling of benzylamine to N-benzylidenebenzylamine. Source data are provided as a Source Data file.
Heterogeneous visible light oxidative coupling of various amines into iminesa.
| Entry | Substrate | Product | Conv. (%)b | TOFc | |
|---|---|---|---|---|---|
| 1 | R=H | R=H | 60 | >99 | 33.0 |
| 2 | R=F | R=F | 50 | >99 | 39.6 |
| 3 | R=CH3 | R=CH3 | 60 | >99 | 33.0 |
| 4 | R=OCH3 | R=OCH3 | 70 | >99 | 28.2 |
| 5 | R=Cl | R=Cl | 90 | >99 | 22.0 |
| 6 | 50 | >99 | 39.6 | ||
| 7 | 120 | >99 | 16.5 | ||
| 8 | 140 | >99 | 14.1 | ||
| 9d | R=H | R=H | 180 | >99 | 11.0 |
| 10e | R=H | R=H | 120 | >99 | 16.5 |
| 11f | R=H | R=H | 300 | >99 | 6.6 |
| 12g | R=H | R=H | 60 | 25 | 8.3 |
| 13h | R=H | R=H | 60 | 57 | 19.0 |
aReaction conditions: 0.10 mmol substrate, 1.00 μmol PTC-1(2H) photocatalyst, 1.0 mL CD3CN, 1.0 atm O2, 25 W blue LED (420 nm < λem < 490 nm).
bDetermined based on 1H NMR data.
cTOF value was calculated by mmol of amine converted per mmol of porphyrin unit per hour.
d3.00 μmol H2CBPP.
e3.00 μmol PCN-222.
f3.00 μmol PCN-224.
g1.00 μmol PTC-1(2H) and 10.00 μmol DABCO.
h1.00 μmol PTC-1(2H) and 10.00 μmol BQ.