2019
DOI: 10.1016/j.chempr.2019.07.020
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Precisely Tuning the Number of Fe Atoms in Clusters on N-Doped Carbon toward Acidic Oxygen Reduction Reaction

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Cited by 363 publications
(335 citation statements)
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“…Chen and co‐workers also discovered that the single Fe atoms can be coordinated with five N atoms, which modulated the interaction strength of oxygen on Fe ions and further enhanced the ORR activity . Besides, the Fe dimers anchored on N‐doped carbon also showed excellent acidic ORR activity with a half‐wave potential of 0.78 V versus RHE and remarkable stability with only −20 mV shift after 20 000 cycles in 0.5 m H 2 SO 4 electrolyte …”
Section: Structure and Catalytic Activity: Bonding And Coordination Cmentioning
confidence: 97%
“…Chen and co‐workers also discovered that the single Fe atoms can be coordinated with five N atoms, which modulated the interaction strength of oxygen on Fe ions and further enhanced the ORR activity . Besides, the Fe dimers anchored on N‐doped carbon also showed excellent acidic ORR activity with a half‐wave potential of 0.78 V versus RHE and remarkable stability with only −20 mV shift after 20 000 cycles in 0.5 m H 2 SO 4 electrolyte …”
Section: Structure and Catalytic Activity: Bonding And Coordination Cmentioning
confidence: 97%
“…Moreover, DFT results indicate more electrons can be filled into the unoccupied Pt 5d-like orbitals in Pt 2 /graphene and is weakened the adsorption of both AB and H 2 molecules, thus generating the superior activity. The dual metal sites consisting of homo-metal species have also demonstrated their superiority in ORR, [75] NRR [76] and alkene epoxidation. [77] Additionally, there is great interest in synthesizing the adjacent dual-metal-site catalysts with different metal species, which has been demonstrated to be highly effective for improved catalytic performance, including Co-Pt, [72] Fe-Pt, [78] Co-Fe, [79] Pt-Ru, [80] and Ni-Fe [81] materials.…”
Section: Synergy Of Neighboring Single Metal Atomsmentioning
confidence: 99%
“…Several candidate systems including Sc2, Ti2, Cr2, Mn2 and Fe2 dimers on the 6N-V6 monolayer have adsorption energies of −3.71 ~ −0.48 eV for fixation of two CO2 molecules (Figure 3 and Figure S3), while the other metal dimers are only able to bind one CO2 molecule. Considering that Fe is an earthabundant element and dispersed Fe atoms and dimers can be readily obtained in the experiment (Ye et al, 2019;Tian et al, 2018), thereafter we explored Fe2 dimer on various nitrogenated 2D holey carbon materials as a representative of dual metal centers. and 4N-V2, 5N-V3, and 6N-V4(a) increases with both N content and hole size.…”
Section: As Presented Inmentioning
confidence: 99%
“…Furthermore, homonuclear and heteronuclear dimers of transition metal immobilized in carbon based nanostructures, such as Fe2 and Fe-Co on nitrogenated graphitic carbon materials, Fe-Ni on N-doped graphene, and Pt-Ru on g-C3N4, have been synthesized in the laboratory (Ye et al, 2019;Wang et al, 2017;Zhou et al, 2019). This opens up the windows for a broader range of chemical processes that require dual reaction centers either with enhanced activity or carrying different functionalities simultaneously.…”
Section: Introductionmentioning
confidence: 99%