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 45 checked references that resolve
resolves10.1039/B802882FHigh capacity hydrogenstorage materials: attributes for automotive applications and techniques for materials discovery
resolves10.1021/ja208475yNoble-Metal-Free Bimetallic Nanoparticle-Catalyzed Selective Hydrogen Generation from Hydrous Hydrazine for Chemical Hydrogen Storage
resolves10.1021/ja908037tComplete Conversion of Hydrous Hydrazine to Hydrogen at Room Temperature for Chemical Hydrogen Storage
resolves10.1021/ja903869yRoom-Temperature Hydrogen Generation from Hydrous Hydrazine for Chemical Hydrogen Storage
resolves10.1038/ncomms4621Selective and mild hydrogen production using water and formaldehyde
resolves10.1038/ncomms14990Homogeneously catalysed conversion of aqueous formaldehyde to H2 and carbonate
resolves10.1002/cctc.201600709Reactivity of a Ruthenium–Carbonyl Complex in the Methanol Dehydrogenation Reaction
resolves10.1039/C4CC09471ATowards a methanol economy based on homogeneous catalysis: methanol to H
<sub>2</sub>
and CO
<sub>2</sub>
to methanol
resolves10.1021/acs.chemrev.6b00556Homogeneous Transition Metal Catalysis of Acceptorless Dehydrogenative Alcohol Oxidation: Applications in Hydrogen Storage and to Heterocycle Synthesis
resolves10.1038/nchem.1595A homogeneous transition metal complex for clean hydrogen production from methanol–water mixtures
resolves10.1007/s11244-008-9070-7Carbide and Nitride Supported Methanol Steam Reforming Catalysts: Parallel Synthesis and High Throughput Screening
resolves10.1038/nature11891Low-temperature aqueous-phase methanol dehydrogenation to hydrogen and carbon dioxide
resolves10.1021/cs500937fReusable Homogeneous Catalytic System for Hydrogen Production from Methanol and Water
resolves10.1021/acscatal.5b00137Base-Free Methanol Dehydrogenation Using a Pincer-Supported Iron Compound and Lewis Acid Co-catalyst
resolves10.1002/cctc.201700015Iridium–PNP Pincer Complexes for Methanol Dehydrogenation at Low Base Concentration
resolves10.1021/ic502521cMethanol Dehydrogenation by Iridium N-Heterocyclic Carbene Complexes
resolves10.1002/anie.201610182A Stable Manganese Pincer Catalyst for the Selective Dehydrogenation of Methanol
resolves10.1038/nature21672Low-temperature hydrogen production from water and methanol using Pt/α-MoC catalysts
resolves10.1002/ejic.201701446Ligand‐Tuned C–H Bond Activation/Arylation of 2‐Arylpyridines over Pyridine‐Based
<i>N</i>
,
<i>O/N</i>
,
<i>N</i>
Ligated Ruthenium–Arene Complexes
resolves10.1038/ncomms12333Dehydrogenation of anhydrous methanol at room temperature by o-aminophenol-based photocatalysts
resolves10.1002/cctc.201700056Catalytic Hydrogenation of Arenes in Water Over In Situ Generated Ruthenium Nanoparticles Immobilized on Carbon
resolves10.1021/ja021436cIs It Homogeneous or Heterogeneous Catalysis? Identification of Bulk Ruthenium Metal as the True Catalyst in Benzene Hydrogenations Starting with the Monometallic Precursor, Ru(II)(η<sup>6</sup>-C<sub>6</sub>Me<sub>6</sub>)(OAc)<sub>2</sub>, Plus Kinetic Characterization of the Heterogeneous Nucleation, Then Autocatalytic Surface-Growth Mechanism of Metal Film Formation
resolves10.1021/cr2002905Resolving Heterogeneity Problems and Impurity Artifacts in Operationally Homogeneous Transition Metal Catalysts
resolves10.1021/acs.accounts.7b00378Organometallic Ruthenium Nanoparticles: Synthesis, Surface Chemistry, and Insights into Ligand Coordination
resolves10.1039/C6TA05517FImproved hydrogen oxidation reaction under alkaline conditions by ruthenium–iridium alloyed nanoparticles
resolves10.1021/la962103uRelation between Crystallite Size and Dispersion on Supported Metal Catalysts
resolves10.1021/acscatal.8b03053Ligand-Capped Ru Nanoparticles as Efficient Electrocatalyst for the Hydrogen Evolution Reaction
resolves10.1002/anie.200704763Reactions of Olefins with Ruthenium Hydride Nanoparticles: NMR Characterization, Hydride Titration, and Room‐Temperature CC Bond Activation
The 3 references without a DOI — listed, not checked
no DOI — not checkedD0CY01470B-(cit12)/*[position()=1]
no DOI — not checkedH. H. Kung and W.-H.Cheng , in Methanol production and use , ed. H. H Kung and W.-H. Cheng , Marcel Dekker , New York , 1994
no DOI — not checkedG. Bergeret and P.Gallezot , in Handbook of Heterogeneous Catalysis , ed. G. Ertl , H. Knözinger , F. Schüth and J. Weitkamp , 2008 , pp. 738–765
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