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 44 checked references that resolve
resolves10.1021/cr9003924Engineering Metal Organic Frameworks for Heterogeneous Catalysis
resolves10.1039/B511962FMetal–organic frameworks—prospective industrial applications
resolves10.1016/j.jcat.2005.02.007Novel microporous rhodium(II) carboxylate polymer complexes containing metalloporphyrin: syntheses and catalytic performances in hydrogenation of olefins
resolves10.1002/chem.200600220Probing the Lewis Acidity and Catalytic Activity of the Metal–Organic Framework [Cu<sub>3</sub>(btc)<sub>2</sub>] (BTC=Benzene‐1,3,5‐tricarboxylate)
resolves10.1039/B600408CA metal–organic framework material that functions as an enantioselective catalyst for olefin epoxidation
resolves10.1002/ange.200462786Strategien für die Wasserstoffspeicherung in metall‐organischen Kompositgerüsten
resolves10.1021/ja0570032Metal−Organic Frameworks with Exceptionally High Capacity for Storage of Carbon Dioxide at Room Temperature
resolves10.1021/ja0771639Metal-Organic Framework from an Anthracene Derivative Containing Nanoscopic Cages Exhibiting High Methane Uptake
resolves10.1021/jp0622381Novel Photocatalysts for the Decomposition of Organic Dyes Based on Metal-Organic Framework Compounds
resolves10.1039/b814539cPhotocatalytic hydrogen production from water using porous material [Ru2(p-BDC)2]n
resolves10.1002/chem.200903526Water Stable Zr–Benzenedicarboxylate Metal–Organic Frameworks as Photocatalysts for Hydrogen Generation
resolves10.1039/c1jm12754cMetal–organic frameworks: promising materials for improving the open circuit voltage of dye-sensitized solar cells
resolves10.1021/jp206426wPhotoresponse Characteristics of Archetypal Metal–Organic Frameworks
resolves10.1002/cssc.200800203Isoreticular MOFs as Efficient Photocatalysts with Tunable Band Gap: An Operando FTIR Study of the Photoinduced Oxidation of Propylene
resolves10.1021/ja3059827High Charge Mobility in a Tetrathiafulvalene-Based Microporous Metal–Organic Framework
resolves10.1002/chem.201103433Porous, Conductive Metal‐Triazolates and Their Structural Elucidation by the Charge‐Flipping Method
resolves10.1021/ja908293nRigid Pillars and Double Walls in a Porous Metal-Organic Framework: Single-Crystal to Single-Crystal, Controlled Uptake and Release of Iodine and Electrical Conductivity
resolves10.1021/cm101238mConductivity, Doping, and Redox Chemistry of a Microporous Dithiolene-Based Metal−Organic Framework
resolves10.1021/cm900069fPatterned Growth of Metal-Organic Framework Coatings by Electrochemical Synthesis
resolves10.1021/ja2041546Reductive Electrosynthesis of Crystalline Metal–Organic Frameworks
resolves10.1039/C3SC51815ASelective formation of biphasic thin films of metal–organic frameworks by potential-controlled cathodic electrodeposition
resolves10.1016/S0927-0248(98)00178-0Donor–acceptor interaction between non-aqueous solvents and I2 to generate I−3, and its implication in dye sensitized solar cells
resolves10.1021/nl0341281Nanopore Structure and Sorption Properties of Cu−BTC Metal−Organic Framework
resolves10.1021/ol050281lSynthesis of the Axially Substituted Titanium Pc-C<sub>60</sub> Dyad with a Convenient Method
resolves10.1002/ejic.200600698Oriented Crystallisation on Supports and Anisotropic Mass Transport of the Metal‐Organic Framework Manganese Formate
The 1 reference without a DOI — listed, not checked
no DOI — not checkedKent, C.; Liu, D.; Ito, A.; Zhang, T.; Mehl, B.; Papanikolas, J.; Meyer, T.; Lin, W.Photo-Active and Redox-Active Metal-Organic Frameworks for Solar Energy Utilization. Energy & Fuels Preprints Presented at the 244th American Chemical Society National Meeting;American Chemical Society:Washington, DC, 2012; pp654–655.
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