The selectivity of photocatalytic phenol production from the direct oxidation of benzene can be enhanced by fine adjustment of the morphology and composition of Au-Pd metal nanoparticles supported on titanium dioxide thereby suppressing the decomposition of benzene and evolution of phenolic compounds.

Su, R., Kesavan, L., Jensen, M.M., Tiruvalam, R., He, Q., Dimitratos, N., et al. (2014). Selective photocatalytic oxidation of benzene for the synthesis of phenol using engineered Au-Pd alloy nanoparticles supported on titanium dioxide. CHEMICAL COMMUNICATIONS, 50(84), 12612-12614 [10.1039/c4cc04024d].

Selective photocatalytic oxidation of benzene for the synthesis of phenol using engineered Au-Pd alloy nanoparticles supported on titanium dioxide

Dimitratos, Nikolaos;
2014

Abstract

The selectivity of photocatalytic phenol production from the direct oxidation of benzene can be enhanced by fine adjustment of the morphology and composition of Au-Pd metal nanoparticles supported on titanium dioxide thereby suppressing the decomposition of benzene and evolution of phenolic compounds.
2014
Su, R., Kesavan, L., Jensen, M.M., Tiruvalam, R., He, Q., Dimitratos, N., et al. (2014). Selective photocatalytic oxidation of benzene for the synthesis of phenol using engineered Au-Pd alloy nanoparticles supported on titanium dioxide. CHEMICAL COMMUNICATIONS, 50(84), 12612-12614 [10.1039/c4cc04024d].
Su, Ren*; Kesavan, Lokesh; Jensen, Mads M.; Tiruvalam, Ramchandra; He, Qian; Dimitratos, Nikolaos; Wendt, Stefan; Glasius, Marianne; Kiely, Christophe...espandi
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/666711
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