Direct methanol fuel cells system: A review of dual-role electrocatalysts for oxygen reduction and methanol oxidation
暂无分享,去创建一个
[1] Caijin Shi,et al. Biomass-derived precious metal-free porous carbon: Ca-N,P-doped carbon materials and its electrocatalytic properties , 2021 .
[2] Caijin Shi,et al. Three dimensional nitrogen, phosphorus and sulfur doped porous graphene as efficient bifunctional electrocatalysts for direct methanol fuel cell , 2021 .
[3] Caijin Shi,et al. FeNi-functionalized 3D N, P doped graphene foam as a noble metal-free bifunctional electrocatalyst for direct methanol fuel cells , 2021 .
[4] Hien Duy Mai,et al. Controllable growth of palladium on gold multipod nanoparticles and their enhanced electrochemical oxygen reduction reaction performances , 2020 .
[5] Huanglong Li,et al. Nanoporous high-entropy alloys with low Pt loadings for high-performance electrochemical oxygen reduction , 2020 .
[6] N. Ren,et al. ZIF-67-derived CoO (tetrahedral Co2+)@nitrogen-doped porous carbon protected by oxygen vacancies-enriched SnO2 as highly active catalyst for oxygen reduction and Pt co-catalyst for methanol oxidation , 2019 .
[7] Q. Yuan,et al. Hollow PtCu octahedral nanoalloys: Efficient bifunctional electrocatalysts towards oxygen reduction reaction and methanol oxidation reaction by regulating near-surface composition. , 2019, Journal of colloid and interface science.
[8] P. Tsiakaras,et al. Molybdenum-modified and vertex-reinforced quaternary hexapod nano-skeletons as efficient electrocatalysts for methanol oxidation and oxygen reduction reaction , 2019 .
[9] Xiaonian Li,et al. Enhanced Oxygen Reduction and Methanol Oxidation Electrocatalysis over Bifunctional PtPdIr Mesoporous Hollow Nanospheres. , 2019, Chemistry, an Asian journal.
[10] Meng Wang,et al. An effective and durable interface structure design for oxygen reduction and methanol oxidation electrocatalyst , 2019, Applied Surface Science.
[11] Lei Yu,et al. Restructured PtNi on ultrathin nickel hydroxide for enhanced performance in hydrogen evolution and methanol oxidation , 2019, Journal of Catalysis.
[12] P. Shen,et al. Cross-double dumbbell-like Pt–Ni nanostructures with enhanced catalytic performance toward the reactions of oxygen reduction and methanol oxidation , 2019, Applied Catalysis B: Environmental.
[13] Shuo Li,et al. Amorphous nickel boride membrane coated PdCuCo dendrites as high-efficiency catalyst for oxygen reduction and methanol oxidation reaction , 2019, Materials Today Energy.
[14] Dandan Yang,et al. PtM (M = Co, Ni) Mesoporous Nanotubes as Bifunctional Electrocatalysts for Oxygen Reduction and Methanol Oxidation , 2019, ACS Sustainable Chemistry & Engineering.
[15] Deman Han,et al. Facile solvothermal synthesis of Pt71Co29 lamellar nanoflowers as an efficient catalyst for oxygen reduction and methanol oxidation reactions. , 2019, Journal of colloid and interface science.
[16] Wei Zhan,et al. Ternary CoAuPd and binary AuPd electrocatalysts for methanol oxidation and oxygen reduction reaction: Enhanced catalytic performance by surface reconstruction , 2019, Journal of Power Sources.
[17] Rong Jin,et al. Bridging the Surface Charge and Catalytic Activity of a Defective Carbon Electrocatalyst. , 2019, Angewandte Chemie.
[18] Minghua Wang,et al. Multiwall carbon nanotubes loaded with MoS2 quantum dots and MXene quantum dots: Non–Pt bifunctional catalyst for the methanol oxidation and oxygen reduction reactions in alkaline solution , 2019, Applied Surface Science.
[19] Q. Fu,et al. Two-dimensional circular platinum nanodendrites toward efficient oxygen reduction reaction and methanol oxidation reaction , 2019, Electrochemistry Communications.
[20] K. Suenaga,et al. Sulfur-Doped Graphene-Supported Nickel-Core Palladium-Shell Nanoparticles as Efficient Oxygen Reduction and Methanol Oxidation Electrocatalyst , 2018, ACS Applied Energy Materials.
[21] Hua Zhang,et al. Two-Dimensional Metal Nanomaterials: Synthesis, Properties, and Applications. , 2018, Chemical reviews.
[22] Juan Xu,et al. Template-free synthesis of chain-like PtCu nanowires and their superior performance for oxygen reduction and methanol oxidation reaction , 2018 .
[23] Qing-Yun Hu,et al. Synthesis of 3D Thornbush-like Trimetallic CoAuPd Nanocatalysts and Electrochemical Dealloying for Methanol Oxidation and Oxygen Reduction Reaction , 2018 .
[24] Shaojun Guo,et al. Intermetallic hcp-PtBi/fcc-Pt Core/Shell Nanoplates Enable Efficient Bifunctional Oxygen Reduction and Methanol Oxidation Electrocatalysis , 2018 .
[25] Y. Huh,et al. Ternary PtRuFe nanoparticles supported N-doped graphene as an efficient bifunctional catalyst for methanol oxidation and oxygen reduction reactions , 2017 .
[26] Yufeng Ma,et al. Graphene-carbon nanofiber hybrid supported Pt nanoparticles with enhanced catalytic performance for methanol oxidation and oxygen reduction , 2017 .
[27] Shaopei Jia,et al. Platinum Supported on a Hybrid of Nickel and Tungsten Carbide on New‐Diamond Electrocatalyst for Methanol Oxidation and Oxygen Reduction Reactions , 2017 .
[28] Ai-Jun Wang,et al. l-Glutamic acid assisted eco-friendly one-pot synthesis of sheet-assembled platinum-palladium alloy networks for methanol oxidation and oxygen reduction reactions. , 2017, Journal of colloid and interface science.
[29] Hong Zhao,et al. One-Pot Synthesis of Concave Platinum-Cobalt Nanocrystals and Their Superior Catalytic Performances for Methanol Electrochemical Oxidation and Oxygen Electrochemical Reduction. , 2017, ACS applied materials & interfaces.
[30] N. Mohan,et al. Template-free synthesis of Pt-MOx (M = Ni, Co & Ce) supported on cubic zeolite-A and their catalytic role in methanol oxidation and oxygen reduction reactions characterized by the hydrodynamic study , 2017 .
[31] Shaopei Jia,et al. Low content of Pt supported on Ni-MoC x /carbon black as a highly durable and active electrocatalyst for methanol oxidation, oxygen reduction and hydrogen evolution reactions in acidic condition , 2017 .
[32] Kwang S. Kim,et al. High-Affinity-Assisted Nanoscale Alloys as Remarkable Bifunctional Catalyst for Alcohol Oxidation and Oxygen Reduction Reactions. , 2017, ACS nano.
[33] Xiuqiang Xie,et al. Amino acid-assisted fabrication of uniform dendrite-like PtAu porous nanoclusters as highly efficient electrocatalyst for methanol oxidation and oxygen reduction reactions , 2017 .
[34] S. Zaidi,et al. Enhanced Electrocatalytic Performance of Pt3Pd1 Alloys Supported on CeO2/C for Methanol Oxidation and Oxygen Reduction Reactions , 2017 .
[35] Yusuke Yamada,et al. Communication—Acid-Treated Nickel-Rich Platinum–Nickel Alloys for Oxygen Reduction and Methanol Oxidation Reactions in Alkaline Media , 2017 .
[36] Yingjun Li,et al. Synthesis of highly active and dual-functional electrocatalysts for methanol oxidation and oxygen reduction reactions , 2016 .
[37] Junhua Yuan,et al. Bimetallic PtAu superlattice arrays: Highly electroactive and durable catalyst for oxygen reduction and methanol oxidation reactions , 2016 .
[38] H. Gong,et al. Dealloyed PtAuCu electrocatalyst to improve the activity and stability towards both oxygen reduction and methanol oxidation reactions , 2016 .
[39] Zhichuan J. Xu,et al. One‐Pot Synthesis of Highly Anisotropic Five‐Fold‐Twinned PtCu Nanoframes Used as a Bifunctional Electrocatalyst for Oxygen Reduction and Methanol Oxidation , 2016, Advanced materials.
[40] Shaojun Guo,et al. Facet and dimensionality control of Pt nanostructures for efficient oxygen reduction and methanol oxidation electrocatalysts , 2016, Nano Research.
[41] Chengzhou Zhu,et al. Enhanced Electrocatalytic Activities of PtCuCoNi Three-Dimensional Nanoporous Quaternary Alloys for Oxygen Reduction and Methanol Oxidation Reactions. , 2016, ACS applied materials & interfaces.
[42] H. Fu,et al. Small-sized tungsten nitride anchoring into a 3D CNT-rGO framework as a superior bifunctional catalyst for the methanol oxidation and oxygen reduction reactions , 2016, Nano Research.
[43] P. Kolla,et al. Methanol Oxidation and Oxygen Reduction Activity of PtIrCo-Alloy Nanocatalysts Supercritically Deposited within 3D Carbon Aerogel Matrix , 2015 .
[44] Yali Cao,et al. Enhanced electrocatalytic activity of Pt nanoparticles supported on functionalized graphene for methanol oxidation and oxygen reduction. , 2015, Journal of colloid and interface science.
[45] P. Shen,et al. Hollow molybdenum carbide sphere promoted Pt electrocatalyst for oxygen reduction and methanol oxidation reaction , 2015 .
[46] Zhonghua Zhang,et al. Enhanced methanol electro-oxidation and oxygen reduction reaction performance of ultrafine nanoporous platinum–copper alloy: Experiment and density functional theory calculation , 2015 .
[47] Juan Xu,et al. Carbon-supported Ag@Pt core–shell nanoparticles with enhanced electrochemical activity for methanol oxidation and oxygen reduction reaction , 2015 .
[48] Jiening Zheng,et al. Facile synthesis of platinum–gold alloyed string-bead nanochain networks with the assistance of allantoin and their enhanced electrocatalytic performance for oxygen reduction and methanol oxidation reactions , 2015 .
[49] Ryan O'Hayre,et al. A review on direct methanol fuel cells–In the perspective of energy and sustainability , 2015 .
[50] G. Eggeler,et al. Multi-component nanoporous platinum–ruthenium–copper–osmium–iridium alloy with enhanced electrocatalytic activity towards methanol oxidation and oxygen reduction , 2015 .
[51] C. Chen,et al. One-pot synthesis of platinum3cobalt nanoflowers with enhanced oxygen reduction and methanol oxidation , 2014 .
[52] M. Jahanshahi,et al. Pt catalysts on PANI coated WC/C nanocomposites for methanol electro-oxidation and oxygen electro-reduction in DMFC , 2014 .
[53] Jianrong Chen,et al. Green synthesis of core–shell gold–palladium@palladium nanocrystals dispersed on graphene with enhanced catalytic activity toward oxygen reduction and methanol oxidation in alkaline media , 2014 .
[54] Jianding Qiu,et al. Preparation of nitrogen-doped graphene supporting Pt nanoparticles as a catalyst for oxygen reduction and methanol oxidation , 2014 .
[55] Hao Yu,et al. An opposite change rule in carbon nanotubes supported platinum catalyst for methanol oxidation and oxygen reduction reactions , 2014 .
[56] C. Sharma,et al. Graphene-Manganite-Pd Hybrids as Highly Active and Stable Electrocatalysts for Methanol Oxidation and Oxygen Reduction , 2014 .
[57] O. Jiménez-Sandoval,et al. A novel Rh–Ir electrocatalyst for the oxygen reduction reaction and the hydrogen and methanol oxidation reactions , 2014 .
[58] B. Rezaei,et al. A new strategy for the synthesis of 3-D Pt nanoparticles on reduced graphene oxide through surface functionalization, Application for methanol oxidation and oxygen reduction , 2014 .
[59] P. Shen,et al. MoC–graphite composite as a Pt electrocatalyst support for highly active methanol oxidation and oxygen reduction reaction , 2014 .
[60] Wei Wei,et al. Smaller Pt particles supported on mesoporous bowl-like carbon for highly efficient and stable methanol oxidation and oxygen reduction reaction , 2013 .
[61] K. Ozoemena,et al. Enhanced methanol oxidation and oxygen reduction reactions on palladium-decorated FeCo@Fe/C core-shell nanocatalysts in alkaline medium. , 2013, Physical chemistry chemical physics : PCCP.
[62] Wei Zhang,et al. Antimony doped tin oxide modified carbon nanotubes as catalyst supports for methanol oxidation and oxygen reduction reactions , 2013 .
[63] M. Bele,et al. New Pt-skin electrocatalysts for oxygen reduction and methanol oxidation reactions , 2012 .
[64] B. Hwang,et al. Advanced nanoelectrocatalyst for methanol oxidation and oxygen reduction reaction, fabricated as one-dimensional pt nanowires on nanostructured robust Ti0.7Ru0.3O2 support , 2012 .
[65] B. Pollet,et al. Support materials for PEMFC and DMFC electrocatalysts—A review , 2012 .
[66] Zhang-yu Yu,et al. Significantly enhanced electrocatalytic activity for methanol electro-oxidation on Ag oxide-promoted PtAg/C catalysts in alkaline electrolyte , 2012 .
[67] S. Specchia,et al. Smart synthesis of hollow core mesoporous shell carbons (HCMSC) as effective catalyst supports for methanol oxidation and oxygen reduction reactions , 2012, Journal of Solid State Electrochemistry.
[68] C. R. Raj,et al. Shape-regulated high yield synthesis of electrocatalytically active branched Pt nanostructures for oxygen reduction and methanol oxidation reactions , 2011 .
[69] Ping Wu,et al. Bimetallic Pt-Au nanocatalysts electrochemically deposited on graphene and their electrocatalytic characteristics towards oxygen reduction and methanol oxidation. , 2011, Physical chemistry chemical physics : PCCP.
[70] S. Alia,et al. Porous Platinum Nanotubes for Oxygen Reduction and Methanol Oxidation Reactions , 2010 .
[71] Mohsen Khosravi,et al. Carbon paper supported Pt/Au catalysts prepared via Cu underpotential deposition-redox replacement and investigation of their electrocatalytic activity for methanol oxidation and oxygen reduction reactions , 2010 .
[72] Ping Wu,et al. Pd@Pt Core−Shell Nanostructures with Controllable Composition Synthesized by a Microwave Method and Their Enhanced Electrocatalytic Activity toward Oxygen Reduction and Methanol Oxidation , 2010 .
[73] S. Joo,et al. Preparation of high loading Pt nanoparticles on ordered mesoporous carbon with a controlled Pt size and its effects on oxygen reduction and methanol oxidation reactions , 2009 .
[74] Chunming Wang,et al. Electro-reduction of oxygen and electro-oxidation of methanol at Pd monolayer-modified macroporous Pt electrode , 2009 .
[75] Won Su Lee,et al. Investigation of Pt/WC/C catalyst for methanol electro-oxidation and oxygen electro-reduction , 2008 .
[76] V. Radmilović,et al. Pt/C doped by MoOx as the electrocatalyst for oxygen reduction and methanol oxidation , 2008 .
[77] Aicheng Chen,et al. Electrocatalytic Activity of Nanoporous Pt – Ir Materials toward Methanol Oxidation and Oxygen Reduction , 2008 .
[78] Jing Li,et al. A Composite of Polypyrrole Nanowire Platinum Modified Electrode for Oxygen Reduction and Methanol Oxidation Reactions , 2007 .
[79] B. Jena,et al. Synthesis of flower-like gold nanoparticles and their electrocatalytic activity towards the oxidation of methanol and the reduction of oxygen. , 2007, Langmuir : the ACS journal of surfaces and colloids.
[80] Prashant V. Kamat,et al. Carbon Nanostructures in Portable Fuel Cells: Single-Walled Carbon Nanotube Electrodes for Methanol Oxidation and Oxygen Reduction , 2004 .
[81] Shimshon Gottesfeld,et al. High performance direct methanol polymer electrolyte fuel cells , 1996 .