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Catalysts:2025年”Title Story”文章合集 | MDPI 文献清单 |
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期刊名:Catalysts
期刊主页:https://www.mdpi.com/journal/catalysts
探索催化科学的无限可能。还在为寻找高质量的催化研究文献而花费大量时间?别急,这份 Catalysts 2025年“Title Story”精选合集汇集了本年度最受关注的研究成果。无论是环境催化、生物催化还是能源转换材料,这里也许能为你提供全新的研究灵感和突破口!
1. Fischer-Speier Esterification and Beyond: Recent Mechanicistic Advances
Fischer-Speier酯化反应及其进展:近期的机理学突破
https://www.mdpi.com/2073-4344/14/12/931
Mannu, A.; Mele, A. Fischer-Speier Esterification and Beyond: Recent Mechanicistic Advances. Catalysts 2024, 14, 931.
2. Proton-Exchange Membrane Electrolysis for Green Hydrogen Production: Fundamentals, Cost Breakdown, and Strategies to Minimize Platinum-Group Metal Content in Hydrogen Evolution Reaction Electrocatalysts
质子交换膜电解制绿氢:基本原理、成本分析与减少析氢反应电催化剂中铂族金属含量的策略
https://www.mdpi.com/2073-4344/14/12/845
Araújo, H.F.; Gómez, J.A.; Santos, D.M.F. Proton-Exchange Membrane Electrolysis for Green Hydrogen Production: Fundamentals, Cost Breakdown, and Strategies to Minimize Platinum-Group Metal Content in Hydrogen Evolution Reaction Electrocatalysts. Catalysts 2024, 14, 845.
3. The Enantiopure 1,2-Diphenylethylenediamine (DPEDA) Motif in the Development of Organocatalysts for Asymmetric Reactions: Advances in the Last 20 Years
对映纯1,2-二苯基乙二胺(DPEDA)骨架在不对称反应有机催化剂开发中的研究进展:过去20年的进展
https://www.mdpi.com/2073-4344/14/12/915
Oljira, S.B.; De Angelis, M.; Sorato, A.; Mazzoccanti, G.; Manetto, S.; DAcquarica, I.; Ciogli, A. The Enantiopure 1,2-Diphenylethylenediamine (DPEDA) Motif in the Development of Organocatalysts for Asymmetric Reactions: Advances in the Last 20 Years. Catalysts 2024, 14, 915.
4. Inorganic Bismuth Catalysts for Photocatalytic Organic Reactions
无机铋催化剂用于光催化有机反应
https://www.mdpi.com/2073-4344/15/2/135
He, H.; Lv, Q.; Yu, B. Inorganic Bismuth Catalysts for Photocatalytic Organic Reactions. Catalysts 2025, 15, 135.
5. Effect of Support on Complete Hydrocarbon Oxidation over Pd-Based Catalysts
载体对Pd基催化剂上完全烃氧化的影响
https://www.mdpi.com/2073-4344/15/2/110
Tabakova, T.; Grahovski, B.; Karakirova, Y.; Petrova, P.; Venezia, A.M.; Liotta, L.F.; Todorova, S. Effect of Support on Complete Hydrocarbon Oxidation over Pd-Based Catalysts. Catalysts 2025, 15, 110.
6. Depolymerization of PET with n-Hexylamine, n-Octylamine, and 3-Amino-1-Propanol, Affording Terephthalamides
PET与正己胺、正辛胺和3-氨基-1-丙醇的解聚反应生成对苯二甲酰胺
https://www.mdpi.com/2073-4344/15/2/129
Hiruba, S.; Ogiwara, Y.; Nomura, K. Depolymerization of PET with n-Hexylamine, n-Octylamine, and 3-Amino-1-Propanol, Affording Terephthalamides. Catalysts 2025, 15, 129.
7. The Application of Zeolites in the Selective Synthesis of Methylamine: A Review
沸石在甲胺选择性合成中的应用:综述
https://www.mdpi.com/2073-4344/15/3/294
Jin, K.; Yan, Y.; Pan, J.; Liu, J.-Y.; Yan, W. The Application of Zeolites in the Selective Synthesis of Methylamine: A Review. Catalysts 2025, 15, 294.
8. Cobalt-Decorated Carbonized Wood as an Efficient Electrocatalyst for Water Splitting
钴装饰碳化木材作为高效析水电催化剂
https://www.mdpi.com/2073-4344/15/5/503
Cheng, Z.; Li, Z.; Huang, S.; Pan, J.; Mei, J.; Zhang, S.; Peng, X.; Lu, W.; Yan, L. Cobalt-Decorated Carbonized Wood as an Efficient Electrocatalyst for Water Splitting. Catalysts 2025, 15, 503.
9. Process Intensification for CO2 Hydrogenation to Liquid Fuels
二氧化碳加氢制液体燃料的过程强化
https://www.mdpi.com/2073-4344/15/6/509
Renda, S.; Menéndez, M. Process Intensification for CO2 Hydrogenation to Liquid Fuels. Catalysts 2025, 15, 509.
10. Structured Mesh-Type Pt/Mn/γ-Al2O3/Al Catalyst Enhanced the CO Oxidation at Room Temperature by In Situ Generation of Hydroxyl: Behavior and Mechanism
结构化网状Pt/Mn/γ-Al2O3/Al催化剂通过原位生成羟基增强室温CO氧化:行为与机理
https://www.mdpi.com/2073-4344/15/5/430
Cao, M.; Shu, Q.; Zhang, R.; Zhang, Q. Structured Mesh-Type Pt/Mn/γ-Al2O3/Al Catalyst Enhanced the CO Oxidation at Room Temperature by In Situ Generation of Hydroxyl: Behavior and Mechanism. Catalysts 2025, 15, 430.
11. Laccase-Catalyzed Polymerized Natural Bioactives for Enhanced Mushroom Tyrosinase Inhibition
漆酶催化聚合天然生物活性物质以增强蘑菇酪氨酸酶抑制作用
https://www.mdpi.com/2073-4344/15/5/481
Costa, D.; Rocha, D.; Santos, J.; Noro, J.; Ribeiro, A.; Silva, C. Laccase-Catalyzed Polymerized Natural Bioactives for Enhanced Mushroom Tyrosinase Inhibition. Catalysts 2025, 15, 481.
12. Graphene Oxide-Supported Metal Catalysts for Selective Hydrogenation of Cinnamaldehyde: Impact of Metal Choice and Support Structure
氧化石墨烯负载金属催化剂用于肉桂醛的选择性加氢:金属选择与载体结构的影响
https://www.mdpi.com/2073-4344/15/5/470
Pítinová, M.; Danylo, I.; Shafiq, A.; Hartman, T.; Khover, M.; Sevemez, B.; Kolá?ný, L.; Veselý, M. Graphene Oxide-Supported Metal Catalysts for Selective Hydrogenation of Cinnamaldehyde: Impact of Metal Choice and Support Structure. Catalysts 2025, 15, 470.
13. Microwave-Assisted Degradation of Azo Dyes Using NiO Catalysts
微波辅助NiO催化剂降解偶氮染料
https://www.mdpi.com/2073-4344/15/8/702
Chan, C.d.C.; Alsalem, L.F.; Almalki, M.; Bozhinovska, I.; Hayward, J.S.; Williams, S.S.N.; Bartley, J.K. Microwave-Assisted Degradation of Azo Dyes Using NiO Catalysts. Catalysts 2025, 15, 702.
14. The Development of Ni-Al Aerogel-Based Catalysts via Supercritical CO2 Drying for Photocatalytic CO2 Methanation
通过超临界CO2干燥制备Ni-Al气凝胶基催化剂用于光催化CO?甲烷化
https://www.mdpi.com/2073-4344/15/7/686
Estevez, D.; Etxeberria, H.; Barrio, V.L. The Development of Ni-Al Aerogel-Based Catalysts via Supercritical CO2 Drying for Photocatalytic CO2 Methanation. Catalysts 2025, 15, 686.
15. Catalysis: Key Technology for the Conversion of CO2 into Fuels and Chemicals
催化技术:将CO2转化为燃料和化学品的关键技术
https://www.mdpi.com/2073-4344/15/7/614
Rocha, R.P.; Figueiredo, J.L. Catalysis: Key Technology for the Conversion of CO2 into Fuels and Chemicals. Catalysts 2025, 15, 614.
16. First Principles Evaluation of Platinum Cluster Metal–Support Interactions on Nitrogen-Doped Carbon Supports
氮掺杂碳载体上铂团簇金属-载体相互作用的第一性原理评估
https://www.mdpi.com/2073-4344/15/7/635
Nguyen, V.; Vyas, S. First Principles Evaluation of Platinum Cluster Metal–Support Interactions on Nitrogen-Doped Carbon Supports. Catalysts 2025, 15, 635.
17. Faster Microwave-Assisted Synthesis of Microspherical Carbons from Commercial and Biomass-Derived Carbohydrates
利用商业和生物质衍生碳水化合物快速微波辅助合成微球碳
https://www.mdpi.com/2073-4344/15/9/885
Romero-Anaya, A.J.; González, M.D.; Granados-Reyes, J.; Arrieche-Hernández, L.E.; Cesteros, Y. Faster Microwave-Assisted Synthesis of Microspherical Carbons from Commercial and Biomass-Derived Carbohydrates. Catalysts 2025, 15, 885.
18. Enhanced Oxygen Reduction Reaction Activity of Carbon-Supported Pt-Co Catalysts Prepared by Electroless Deposition and Galvanic Replacement
化学镀与电化学置换法制备碳负载Pt-Co催化剂增强氧还原反应活性
https://doi.org/10.3390/catal15090895
Banti, A.; Avramova, I.; Sotiropoulos, S.; Georgieva, J. Enhanced Oxygen Reduction Reaction Activity of Carbon-Supported Pt-Co Catalysts Prepared by Electroless Deposition and Galvanic Replacement. Catalysts 2025, 15, 895.
19. Activity and Stability Enhancement of Carbonic Anhydrase Entrapped Within Biomimetic Silica by Methyl-Substituted Silanes
甲基取代硅烷增强封装于仿生二氧化硅中碳酸酐酶的活性与稳定性
https://doi.org/10.3390/catal15090907
How, S.-C.; Kong, X.-S.; Hu, C.-J.; Yu, C.-Y. Activity and Stability Enhancement of Carbonic Anhydrase Entrapped Within Biomimetic Silica by Methyl-Substituted Silanes. Catalysts 2025, 15, 907.
20. Methanol Oxidation over Pd-Doped Co- and/or Ag-Based Catalysts: Effect of Impurities (H2O and CO)
Pd掺杂Co和/或Ag基催化剂上的甲醇氧化:杂质(H2O和CO)的影响
https://doi.org/10.3390/catal15121129
Pachatouridou, E.; Lappas, A.; Iliopoulou, E. Methanol Oxidation over Pd-Doped Co- and/or Ag-Based Catalysts: Effect of Impurities (H2O and CO). Catalysts 2025, 15, 1129.
Catalysts期刊介绍
主编:Keith Hohn, Kansas State University, USA
期刊主要关注催化反应、催化剂制备及应用领域的最新研究成果。开设催化材料、环境催化、光催化、电催化、纳米结构催化、有机和聚合物催化、生物催化、生物质催化、计算催化等13个栏目。目前已被SCIE (Web of Science)、 Scopus、Inspec、Ei Compendex、CAPlus / SciFinder等数据库收录。
2025 Impact Factor:4.5
2025 CiteScore:8.3
Time to First Decision:13.3 Days
Acceptance to Publication:4.6 Days
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