| Literature DB >> 35530486 |
Kazeem O Sulaiman1, V Sudheeshkumar1, Robert W J Scott1.
Abstract
Metal clusters have distinct features such as large surface area, low-coordination-atom enriched surfaces, and discrete energy levels that influence their behavior during catalytic reactions. Atomically-precise Ag clusters, which are analogues of more well-studied Au clusters, are yet to be fully explored as catalysts for various chemical reactions. 2,4-Dimethylbenzenethiol-protected Ag25 clusters were prepared and deposited onto carbon supports followed by calcination. Results from X-ray absorption fine structure (EXAFS) spectroscopy measurements and other characterization techniques indicated that thermal activation of carbon-supported Ag25 clusters resulted in dethiolation of Ag clusters at 250 °C and beyond, and consequently mild growth in particle sizes of Ag clusters on carbon supports was seen with increasing activation temperatures. Both as-prepared and activated Ag25 clusters were active for styrene oxidation reactions, with high selectivity towards styrene oxide, without using any promoter. Results show that mild activation at 250 °C yields the most active catalysts, and higher activation temperatures lead to decreased activities and slightly poorer selectivity to styrene oxidation as a result of cluster sintering. EXAFS data shows the resulting activated clusters are composed of Ag metal and that all thiols are removed from the Ag cluster surfaces, though XPS data shows that thiol oxidation products are still present in the sample. This journal is © The Royal Society of Chemistry.Entities:
Year: 2019 PMID: 35530486 PMCID: PMC9070844 DOI: 10.1039/c9ra05566e
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 4.036
Fig. 1Characteristic features of Ag25L18− clusters (a) UV-vis spectra in DCM, (b) atomic arrangement as visualized using VESTA software,[44] colour scheme is red for the Ag central atom, light blue for Ag surface atoms, dark blue for Ag staple atoms and yellow for sulfur staple atoms. (c) TEM image, and (d) TGA plot.
Fig. 2TEM images of thermally activated Ag25/carbon catalyst samples at (a) 250 °C (b) 350 °C, and (c) 450 °C.
Fig. 3XPS spectra for the as-prepared Ag25/carbon catalyst; (a) C 1s (b) Ag 3d, (c) S 2p and (d) O 1s peaks.
Fig. 4XPS spectra of Ag 3d peaks for (a) as-prepared, and the calcined Ag25/carbon catalyst samples at (b) 250 °C, (c) 350 °C, and (d) 450 °C.
Fig. 5Ag K-edge (a) XANES and (b) FT-EXAFS spectra in R-space for as-prepared and activated Ag25/carbon catalysts and Ag foil reference.
Single shell EXAFS fitting parameters for activated Ag25/carbon catalysts
| Catalyst | CN (Ag–Ag) |
|
|
|
|
|---|---|---|---|---|---|
| @250 °C | 3.8(7) | 2.826(6) | 0.0080(2) | −3.7(8) | 0.017 |
| @350 °C | 6.1(3) | 2.854(5) | 0.0090(7) | −1.9(5) | 0.019 |
| @450 °C | 6.3(3) | 2.859(6) | 0.0081(8) | −0.7(6) | 0.019 |
Catalytic performances of support, as-prepared and activated Ag25/carbon catalystsa
| Catalyst | Activity | Selectivity | ||
|---|---|---|---|---|
| Conversion (%) | TON | SO (%) | BA (%) | |
| Carbon support | 15.3 | 90.9 | 9.1 | |
| Ag25/carbon as-prepared | 51.6 | 1114 | 95.1 | 4.9 |
| Ag25/carbon@250 °C | 61.4 | 1325 | 94.0 | 6.0 |
| Ag25/carbon@350 °C | 49.9 | 1078 | 92.6 | 7.4 |
| Ag25/carbon@450 °C | 46.6 | 1006 | 89.4 | 10.6 |
Reaction conditions: styrene (8.0 mmol), TBHP (24 mmol), MeCN (5.0 mL), catalyst (20 mg) in a flask under reflux, stirring speed (600 rpm), reaction temperature of (82 °C), reaction time (24 h). Ratio of substrate to metal is 2157 : 1. TON = moles of product/moles of Ag.
Catalytic performance of activated Ag25/carbon@250 °C catalyst with sub-stoichiometric amounts of TBHPa
| Entry | Activity | Selectivity | |||
|---|---|---|---|---|---|
| Cycle | Reaction time | Conversion (%) | TON | SO (%) | BA (%) |
| First | 24 h | 5.8 | 125 | 60.8 | 39.2 |
| 72 h | 23.3 | 502 | 59.6 | 40.4 | |
| Second | 24 h | 7.2 | 155 | 59.8 | 40.2 |
| 72 h | 46.2 | 997 | 61.0 | 39.0 | |
| Third | 24 h | 7.4 | 160 | 59.6 | 40.4 |
| 72 h | 46.7 | 1007 | 61.2 | 38.8 | |
Reaction conditions: styrene (8.0 mmol), TBHP (0.4 mmol), MeCN (5.0 mL), catalyst (20 mg) in a flask under reflux, stirring speed (600 rpm), reaction temperature of (82 °C). Ratio of substrate to metal is 2157 : 1. TON = moles of product/moles of Ag.