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The photocatalytic degradations of methylene blue and phenol were used as model reactions to test the device, demonstrating promising degradation performance.
Electrochemical nitrite reduction and oxidation are studied as model reactions to demonstrate potential applications of the NPG microelectrodes in electrocatalysis and electroanalysis.
Furthermore, hydrogenations of 1-hexene and cyclohexene were chosen as model reactions to evaluate the catalytic behavior of the Pd/ZSM-5@ZIF-8 core–shell architecture and tert-dodecylthiol was used as a poison to test its anti-poisoning ability.
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MMPs can be used to identify subtle prediction behaviour, e.g. model reaction to activity cliffs.
Therefore, we employed the glucose oxidation as the model reaction to test the catalytic activity of the synthesized Au colloids.
At first, the reaction of o-phenylenediamine with benzaldehyde was chosen as a model reaction to optimize the reaction conditions (Table 1).
The degradation of methylene blue was used as a model reaction to evaluate the photocatalytic activity of the obtained samples.
The typical reduction of 4-nitrophenol was chosen as a model reaction to evaluate the catalytic performance of the aerogel.
MDR is an interesting model reaction to evaluate the reactivity and surface chemistry of mixed oxides.
We used the conversion of nitro group to amino group as a model reaction to study the catalytic reduction activity of the QCs.
The reduction of 4-NP with KBH4 solution was used as a model reaction to study the catalytic activity of Ag-decorated SnO2 composites.
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