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,
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The 42 checked references that resolve
resolves10.1021/ja00160a038Design and construction of a new class of scaffolding-like materials comprising infinite polymeric frameworks of 3D-linked molecular rods. A reappraisal of the zinc cyanide and cadmium cyanide structures and the synthesis and structure of the diamond-related frameworks [N(CH3)4][CuIZnII(CN)4] and CuI[4,4',4'',4'''-tetracyanotetraphenylmethane]BF4.xC6H5NO2
resolves10.1038/46248Design and synthesis of an exceptionally stable and highly porous metal-organic framework
resolves10.1021/cr200139gMetal Azolate Frameworks: From Crystal Engineering to Functional Materials
resolves10.3390/polym3041750Coordination Polymers and Metal Organic Frameworks Derived from 1,2,4-Triazole Amino Acid Linkers
resolves10.1038/nature02311A route to high surface area, porosity and inclusion of large molecules in crystals
resolves10.1126/science.1101982Hysteretic Adsorption and Desorption of Hydrogen by Nanoporous Metal-Organic Frameworks
resolves10.1002/asia.200600390Microporous Magnesium and Manganese Formates for Acetylene Storage and Separation
resolves10.1021/cr200217cReview and Analysis of Molecular Simulations of Methane, Hydrogen, and Acetylene Storage in Metal–Organic Frameworks
resolves10.1039/c2cc32384bA strategy toward constructing a bifunctionalized MOF catalyst: post-synthetic modification of MOFs on organic ligands and coordinatively unsaturated metal sites
resolves10.1021/cs3005874Metal–Organic Frameworks for Light Harvesting and Photocatalysis
resolves10.1021/cg2016512Visible-Light-Driven Photocatalysts of Metal–Organic Frameworks Derived from Multi-Carboxylic Acid and Imidazole-Based Spacer
resolves10.1021/ja203564wDoping Metal–Organic Frameworks for Water Oxidation, Carbon Dioxide Reduction, and Organic Photocatalysis
resolves10.1039/b814539cPhotocatalytic hydrogen production from water using porous material [Ru2(p-BDC)2]n
resolves10.1021/jp3046005Visible-Light-Promoted Photocatalytic Hydrogen Production by Using an Amino-Functionalized Ti(IV) Metal–Organic Framework
resolves10.1021/jp206426wPhotoresponse Characteristics of Archetypal Metal–Organic Frameworks
resolves10.1021/jp312708eLayer-by-Layer Growth and Photocurrent Generation in Metal–Organic Coordination Films
resolves10.1021/ja311085eSemiconductor@Metal–Organic Framework Core–Shell Heterostructures: A Case of ZnO@ZIF-8 Nanorods with Selective Photoelectrochemical Response
resolves10.1039/c1jm12754cMetal–organic frameworks: promising materials for improving the open circuit voltage of dye-sensitized solar cells
resolves10.1021/jp206919mPhotochemical Response of Commercial MOFs: Al<sub>2</sub>(BDC)<sub>3</sub> and Its Use As Active Material in Photovoltaic Devices
resolves10.1021/jp4079663Cu-Based Metal–Organic Frameworks for Photovoltaic Application
resolves10.1038/srep03930Enhanced photovoltaic performance of Cu-based metal-organic frameworks sensitized solar cell by addition of carbon nanotubes
resolves10.1039/c1cc11107hSolvothermal growth of a ruthenium metal–organic framework featuring HKUST-1 structure type as thin films on oxide surfaces
resolves10.1021/ol050281lSynthesis of the Axially Substituted Titanium Pc-C<sub>60</sub> Dyad with a Convenient Method
resolves10.1021/cm101238mConductivity, Doping, and Redox Chemistry of a Microporous Dithiolene-Based Metal−Organic Framework
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
resolves10.1039/c2cp41099kConductive metal–organic frameworks and networks: fact or fantasy?
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