Результаты исследований: Научные публикации в периодических изданиях › статья › Рецензирование
Phosphorus doping to boost Pd/C catalysts : A review. / Borodina, Olga A.; Yeletsky, Petr M.
в: Journal of Chemical Technology and Biotechnology, Том 101, № 5, 07.03.2026, стр. 944-960.Результаты исследований: Научные публикации в периодических изданиях › статья › Рецензирование
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TY - JOUR
T1 - Phosphorus doping to boost Pd/C catalysts
T2 - A review
AU - Borodina, Olga A.
AU - Yeletsky, Petr M.
N1 - Borodina, O.A. and Yeletsky, P.M. (2026), Phosphorus doping to boost Pd/C catalysts: a review. J Chem Technol Biotechnol, 101: 944-960. https://doi.org/10.1002/jctb.70156 This work was supported by the Ministry of Science and HigherEducation of the Russian Federation within governmental orderfor the Boreskov Institute of Catalysis SB RAS (project FWUR-2024-0038) and Novosibirsk State University (project №. FSUS-2025-0014)
PY - 2026/3/7
Y1 - 2026/3/7
N2 - Nowadays, Pd/C represents a classic catalytic system that has been widely applied in fine organic synthesis, electrocatalysis, hydrogenation reactions, and many others. Since palladium belongs to precious metals, the urgent task is to intelligently manage its consumption and increase the activity and stability of such catalysts. One of the most effective approaches to enhance the performance of these catalysts is the modification of carbon support by heteroatoms such as N, P, B, and S elements. In the presented review, pathways for modification of Pd/C catalyst or carbon supports with phosphorus to improve their characteristics and, thereby, catalytic properties of Pd/C catalysts are discussed. The influence of phosphorus doping on electronic, structural, and composition of this catalytic system was analyzed. It was found that modification by phosphorus results in the richest variety of P-based functionalities on a carbon support as compared to N, B, and S heteroatoms, as phosphorus possesses various stable oxidation states (−3, 0, +1, +3, +5) and can also subject Pd to partial phosphidation. This opens up the broadest possibilities for modulating and tuning catalytic properties of Pd/C catalysts. Furthermore, such modification results in significant enhancement of catalytic properties of Pd/C catalysts in electrooxidation of organic compounds in fuel cells, hydrogen storage, water electrolysis, cross-coupling reactions, hydrogenation, and other applications. However, since this approach to modification is quite novel, many challenges remain to be overcome. For example, the necessity of thorough control over the types and distribution of P-containing functionalities to obtain catalysts tuned for specific reactions is still an open question. © 2026 Society of Chemical Industry (SCI).
AB - Nowadays, Pd/C represents a classic catalytic system that has been widely applied in fine organic synthesis, electrocatalysis, hydrogenation reactions, and many others. Since palladium belongs to precious metals, the urgent task is to intelligently manage its consumption and increase the activity and stability of such catalysts. One of the most effective approaches to enhance the performance of these catalysts is the modification of carbon support by heteroatoms such as N, P, B, and S elements. In the presented review, pathways for modification of Pd/C catalyst or carbon supports with phosphorus to improve their characteristics and, thereby, catalytic properties of Pd/C catalysts are discussed. The influence of phosphorus doping on electronic, structural, and composition of this catalytic system was analyzed. It was found that modification by phosphorus results in the richest variety of P-based functionalities on a carbon support as compared to N, B, and S heteroatoms, as phosphorus possesses various stable oxidation states (−3, 0, +1, +3, +5) and can also subject Pd to partial phosphidation. This opens up the broadest possibilities for modulating and tuning catalytic properties of Pd/C catalysts. Furthermore, such modification results in significant enhancement of catalytic properties of Pd/C catalysts in electrooxidation of organic compounds in fuel cells, hydrogen storage, water electrolysis, cross-coupling reactions, hydrogenation, and other applications. However, since this approach to modification is quite novel, many challenges remain to be overcome. For example, the necessity of thorough control over the types and distribution of P-containing functionalities to obtain catalysts tuned for specific reactions is still an open question. © 2026 Society of Chemical Industry (SCI).
KW - P-doping
KW - carbon functionalization
KW - carbon support
KW - heteroatom modification
KW - palladium catalyst
KW - P-легирование
KW - функционализация углеродом
KW - углеродный носитель
KW - модифицирование гетероатомами
KW - палладиевый катализатор
UR - https://www.mendeley.com/catalogue/6e04a64b-a8fa-35f9-9d4a-91887ff76665/
UR - https://www.scopus.com/pages/publications/105032116437
U2 - 10.1002/jctb.70156
DO - 10.1002/jctb.70156
M3 - Article
VL - 101
SP - 944
EP - 960
JO - Journal of Chemical Technology and Biotechnology
JF - Journal of Chemical Technology and Biotechnology
SN - 0268-2575
IS - 5
ER -
ID: 83071621