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Effect of TiO2 textural characteristics on the performance of supported PdCu nanoparticles in two-stage olefin synthesis

Alexandra S. Vishnevich 2
Alexandra S. Vishnevich
Galina N. Baeva 1
Galina N. Baeva
Dmitry P. Melnikov 2
Dmitry P. Melnikov
Published 2026-06-03received 2026-04-08
CommunicationVolume 36, Issue 5
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Rassolov A. V. et al. Effect of TiO2 textural characteristics on the performance of supported PdCu nanoparticles in two-stage olefin synthesis // Mendeleev Communications. 2026. Vol. 36. No. 5.
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Rassolov A. V., Vishnevich A. S., Patil E. D., Baeva G. N., Melnikov D. P., Bokarev D. A., Stakheev A. Y. Effect of TiO2 textural characteristics on the performance of supported PdCu nanoparticles in two-stage olefin synthesis // Mendeleev Communications. 2026. Vol. 36. No. 5.
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TY - JOUR
DO - 10.71267/mencom.8060
UR - https://mendcomm.colab.ws/publications/10.71267/mencom.8060
TI - Effect of TiO2 textural characteristics on the performance of supported PdCu nanoparticles in two-stage olefin synthesis
T2 - Mendeleev Communications
AU - Rassolov, Alexander V.
AU - Vishnevich, Alexandra S.
AU - Patil, Ekaterina D.
AU - Baeva, Galina N.
AU - Melnikov, Dmitry P.
AU - Bokarev, Dmitriy A.
AU - Stakheev, Alexander Yu.
PY - 2026
DA - 2026/06/03
PB - Mendeleev Communications
IS - 5
VL - 36
ER -
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@article{2026_Rassolov,
author = {Alexander V. Rassolov and Alexandra S. Vishnevich and Ekaterina D. Patil and Galina N. Baeva and Dmitry P. Melnikov and Dmitriy A. Bokarev and Alexander Yu. Stakheev},
title = {Effect of TiO2 textural characteristics on the performance of supported PdCu nanoparticles in two-stage olefin synthesis},
journal = {Mendeleev Communications},
year = {2026},
volume = {36},
publisher = {Mendeleev Communications},
month = {Jun},
url = {https://mendcomm.colab.ws/publications/10.71267/mencom.8060},
number = {5},
doi = {10.71267/mencom.8060}
}
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Keywords

bimetallic alloy
copper
nanoparticles
olefins
selective hydrogenation
Sonogashira cross-coupling
Tandem catalysis

Abstract

The influence of the porous structure and phase composition of the TiO2 support on the performance of heterogeneous bimetallic PdCu catalysts in the two-stage synthesis of cis- and trans-stilbenes was investigated. It was found that the combined effect of a developed porous structure and strong metal–support interactions has a positive effect on catalytic performance at each individual stage of the process.

Funders

Russian Science Foundation
25-73-00079

References

1.
Geminal-atom catalysis for cross-coupling
Hai X., Zheng Y., Yu Q., Guo N., Xi S., Zhao X., Mitchell S., Luo X., Tulus V., Wang M., Sheng X., Ren L., Long X., Li J., He P., et. al.
Nature, 2023
2.
Aminative Suzuki–Miyaura coupling
Onnuch P., Ramagonolla K., Liu R.Y.
Science, 2024
3.
Rutile TiO2 Confined Atomic Palladium Species Boosts C−C Coupling Efficiency in Sonogashira Coupling Reactions
Li Z., Liu H., Pang A., Ji S., Lu X., Zhang Y., Guo C., Bai L., Horton J.H., Wang Y.
Advanced Functional Materials, 2025
5.
eds. J. J. Li and G. W. Gribble, 2nd edn., Elsevier, Amsterdam, 2007
7.
Synthesis of Potent Agonists of the d-myo-Inositol 1,4,5-Trisphosphate Receptor Based on Clustered Disaccharide Polyphosphate Analogues of Adenophostin A
de Kort M., Correa V., Valentijn A.R., van der Marel G.A., Potter B.V., Taylor C.W., van Boom J.H.
Journal of Medicinal Chemistry, 2000
9.
Studies on stereoselective Sonogashira coupling of 1,1-dibromo-1-alkene
Uenishi J., Matsui K., Ohmiya H.
Journal of Organometallic Chemistry, 2002
10.
Synthesis of α,ω-Difunctionalized Oligo- and Poly(p-phenyleneethynylene)s
13.
Recent Expedition in Pd‐Catalyzed Sonogashira Coupling and Related Processes
Choy P.Y., Gan K.B., Kwong F.Y.
Chinese Journal of Chemistry, 2023
14.
Catalytic Activation of Trimethylsilylacetylenes: A One-Pot Route to Unsymmetrical Acetylenes and Heterocycles
Lasányi D., Mészáros Á., Novák Z., Tolnai G.L.
Journal of Organic Chemistry, 2018
16.
Copper-catalyzed deacetonative Sonogashira coupling
Kotovshchikov Y.N., Binyakovsky A.A., Latyshev G.V., Lukashev N.V., Beletskaya I.P.
Organic and Biomolecular Chemistry, 2022
18.
Mashkovsky I.S., Markov P.V., Baeva G.N., Vaulina A.E., Smirnova N.S., Melnikov D.P., Stakheev A.Y.
Mendeleev Communications, 2025
19.
Bimetallic Nanocrystals: Syntheses, Properties, and Applications.
Gilroy K.D., Ruditskiy A., Peng H., Qin D., Xia Y.
Chemical Reviews, 2016
20.
Recent Advances in the Application of Heterogeneous Nanocatalysts for Sonogashira Coupling Reactions
Nasrollahzadeh M., Atarod M., Alizadeh M., Hatamifard A., Sajadi S.
Current Organic Chemistry, 2017
21.
Core–shell PdCu bimetallic colloidal nanoparticles in Sonogashira cross-coupling reaction: mechanistic insights into the catalyst mode of action
Olekszyszen D.N., Albuquerque B.L., Silva D.D., Tripodi G.L., de Oliveira D.C., Domingos J.B.
Nanoscale, 2020
22.
Magnesium oxide supported bimetallic Pd/Cu nanoparticles as an efficient catalyst for Sonogashira reaction
23.
Hydrothermal synthesis of Ir and Ir—Pd nanoparticles on carbon nanotubes
Borisov R.V., Belousov O.V., Likhatski M.N., Zhizhaev A.M., Kirik S.D.
Russian Chemical Bulletin, 2022
24.
Performance of Cu-Alloyed Pd Single-Atom Catalyst for Semihydrogenation of Acetylene under Simulated Front-End Conditions
Pei G.X., Liu X.Y., Yang X., Zhang L., Wang A., Li L., Wang H., Wang X., Zhang T.
ACS Catalysis, 2017
25.
TiO2-Modified Montmorillonite-Supported Porous Carbon-Immobilized Pd Species Nanocomposite as an Efficient Catalyst for Sonogashira Reactions
Chen Y., Sun K., Zhang T., Zhou J., Liu Y., Zeng M., Ren X., Feng R., Yang Z., Zhang P., Wang B., Cao X.
Molecules, 2023
27.
Facet‐Dependent Oxidative Strong Metal‐Support Interactions of Palladium–TiO 2 Determined by In Situ Transmission Electron Microscopy
Tang M., Li S., Chen S., Ou Y., Hiroaki M., Yuan W., Zhu B., Yang H., Gao Y., Zhang Z., Wang Y.
Angewandte Chemie - International Edition, 2021
28.
Strong Metal‐Support Interactions on TiO 2 ‐Supported Metal Catalysts for Fine‐Tuning Catalysis
Sebastian J., Mebrahtu C., Zeng F., Palkovits R.
Angewandte Chemie - International Edition, 2025
29.
Copper-free Sonogashira cross-coupling reactions: an overview
Mohajer F., Heravi M.M., Zadsirjan V., Poormohammad N.
RSC Advances, 2021
30.
Mechanistic Study of Pd/NHC‐Catalyzed Sonogashira Reaction: Discovery of NHC‐Ethynyl Coupling Process
Eremin D.B., Boiko D.A., Kostyukovich A.Y., Burykina J.V., Denisova E.A., Anania M., Martens J., Berden G., Oomens J., Roithová J., Ananikov V.P.
Chemistry - A European Journal, 2020