Every reference with a DOI in the deposited reference list resolved to a known
work in Crossref or DataCite at the dated check, and none carried a retraction,
withdrawal, or removal notice.
The 34 checked references that resolve
resolves10.1126/science.1200832High-Performance Electrocatalysts for Oxygen Reduction Derived from Polyaniline, Iron, and Cobalt
resolves10.1039/C4CS00484ARecent advancements in Pt and Pt-free catalysts for oxygen reduction reaction
resolves10.1021/ar300122mFunctionalization of Graphene for Efficient Energy Conversion and Storage
resolves10.1002/anie.201509024A Versatile Iron–Tannin‐Framework Ink Coating Strategy to Fabricate Biomass‐Derived Iron Carbide/Fe‐N‐Carbon Catalysts for Efficient Oxygen Reduction
resolves10.1039/C5TA03199KSustainable seaweed-based one-dimensional (1D) nanofibers as high-performance electrocatalysts for fuel cells
resolves10.1002/smll.201503305Scalable and Cost‐Effective Synthesis of Highly Efficient Fe<sub>2</sub>N‐Based Oxygen Reduction Catalyst Derived from Seaweed Biomass
resolves10.1002/aenm.201400337Metal−Organic Framework‐Derived Nitrogen‐Doped Core‐Shell‐Structured Porous Fe/Fe<sub>3</sub>C@C Nanoboxes Supported on Graphene Sheets for Efficient Oxygen Reduction Reactions
resolves10.1021/acsami.5b11786Porous Core–Shell Fe<sub>3</sub>C Embedded N-doped Carbon Nanofibers as an Effective Electrocatalysts for Oxygen Reduction Reaction
resolves10.1002/adma.201104392Nitrogen‐Enriched Core‐Shell Structured Fe/Fe<sub>3</sub>C‐C Nanorods as Advanced Electrocatalysts for Oxygen Reduction Reaction
resolves10.1039/C4TA04947KNoble metal-free electrocatalysts for the oxygen reduction reaction based on iron and nitrogen-doped porous graphene
resolves10.1002/adfm.201503613Iron–Nitrogen‐Doped Vertically Aligned Carbon Nanotube Electrocatalyst for the Oxygen Reduction Reaction
resolves10.1039/C5EE00682AScalable synthesis of bi-functional high-performance carbon nanotube sponge catalysts and electrodes with optimum C–N–Fe coordination for oxygen reduction reaction
resolves10.1021/jacs.6b00757Understanding the High Activity of Fe–N–C Electrocatalysts in Oxygen Reduction: Fe/Fe<sub>3</sub>C Nanoparticles Boost the Activity of Fe–N<sub><i>x</i></sub>
resolves10.1021/jacs.5b02027Mesoporous N-Doped Carbons Prepared with Thermally Removable Nanoparticle Templates: An Efficient Electrocatalyst for Oxygen Reduction Reaction
resolves10.1039/b401358cThe chemistry of self-propagating high-temperature synthesis
resolves10.1021/nl801976mStructurally Ordered Mesoporous Carbon Nanoparticles as Transmembrane Delivery Vehicle in Human Cancer Cells
resolves10.1002/anie.201001252Monodisperse Yolk–Shell Nanoparticles with a Hierarchical Porous Structure for Delivery Vehicles and Nanoreactors
resolves10.1039/C5TA06958KUltrathin MnO
<sub>2</sub>
nanoflakes grown on N-doped carbon nanoboxes for high-energy asymmetric supercapacitors
resolves10.1002/anie.201502117Ultrathin MoS<sub>2</sub> Nanosheets Supported on N‐doped Carbon Nanoboxes with Enhanced Lithium Storage and Electrocatalytic Properties
resolves10.1002/anie.201603852Unusual Formation of CoSe@carbon Nanoboxes, which have an Inhomogeneous Shell, for Efficient Lithium Storage
resolves10.1039/C4TA02780AUltra-fast synthesis and thermoelectric properties of Te doped skutterudites
resolves10.1021/acsami.5b11063Phase Segregation and Superior Thermoelectric Properties of Mg<sub>2</sub>Si<sub>1–<i>x</i></sub>Sb<sub><i>x</i></sub> (0 ≤ <i>x</i> ≤ 0.025) Prepared by Ultrafast Self-Propagating High-Temperature Synthesis
resolves10.1002/anie.201502173Iron Carbide Nanoparticles Encapsulated in Mesoporous Fe‐N‐Doped Carbon Nanofibers for Efficient Electrocatalysis
resolves10.1021/ja504696rNoble-Metal-Free Fe–N/C Catalyst for Highly Efficient Oxygen Reduction Reaction under Both Alkaline and Acidic Conditions
resolves10.1126/science.aad0832Active sites of nitrogen-doped carbon materials for oxygen reduction reaction clarified using model catalysts
resolves10.1021/jp0496553Direct Preparation of Carbon Nanofiber Electrodes via Pyrolysis of Iron(II) Phthalocyanine: Electrocatalytic Aspects for Oxygen Reduction
resolves10.1021/acsami.6b03260Creation of Ge–N<sub><i>x</i></sub>–C<sub><i>y</i></sub> Configures in Carbon Nanotubes: Origin of Enhanced Electrocatalytic Performance for Oxygen Reduction Reaction
resolves10.1002/adma.201500262Meso/Macroporous Nitrogen‐Doped Carbon Architectures with Iron Carbide Encapsulated in Graphitic Layers as an Efficient and Robust Catalyst for the Oxygen Reduction Reaction in Both Acidic and Alkaline Solutions
resolves10.1038/ncomms2812Advanced zinc-air batteries based on high-performance hybrid electrocatalysts
resolves10.1002/adma.200901582Chemical Vapor Deposition Repair of Graphene Oxide: A Route to Highly‐Conductive Graphene Monolayers
resolves10.1021/nn102339tFacile Synthesis of Graphene Nanosheets <i>via</i> Fe Reduction of Exfoliated Graphite Oxide
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