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- Making Hydrogen Production Greener with Nickel-Based Anodes
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- Simultaneous Valorization of CO₂ and Glycerol to High-Value Acids
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- Smarter hydrogen delivery: transport methane, make hydrogen where you need it
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- Circular Carbon Solutions for Greener Polyurethanes
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- Affordable Catalysts to Boost Hydrogen Production from Water
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- Using Computer Simulations to Enhance Polymer Processing
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- Smart Nanofibers Capture and Convert Carbon Dioxide into Useful Chemicals
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- How Ruthenium Catalysts Support Green Chemistry and Sustainable Anthropogenic Carbon Cycles
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- How to Make Clean Fuels from CO₂ and Hydrogen – Smart Reactor Simulations
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- Powering Industry with Wind: How E-Fuels Like Hydrogen and Methanol Store Green Energy
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- Encapsulating iron nanoparticles inside hollow carbon spheres: Better catalysts for CO2 conversion
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- How much Energy is Required for Transporting Hydrogen in Large-Scale Pipeline Networks?
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- Sustainability of Hydrogen Supply Chains
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- Transforming By-products from Paper Making into Sustainable Chemicals
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- Hydrogen Production Technologies for Defossilizing the Energy, Transport, and Chemical Sectors.
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- New Building Blocks for Stronger and Greener Polyurethane Materials
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- Making Use of Biomass
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- Converting Renewable Energy into Useful Chemicals
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- Polyurethanes: Versatile Materials for a Wide Range of Applications
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- Environmental assessment of renewable supply chains in chemical industry with particular regard to their geographic conditions
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- Configuration of chemical sites within a volatile energy system
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- Forthcoming technologies as enabler in the energy system transformation
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- Cracking the Code of Polymer Growth from CO₂ and Epoxides
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- Understanding Carbon Fluxes: How Human Activities Impact the Earth's Climate.
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- Optimizing Biodiesel Production: Reactor Design & Mixing Strategies.
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- Smart Catalysts for Amine Synthesis: Lithium-Modified Ruthenium on Carbon Nanotubes
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- Tracking Foam Formation: How Catalysts Shape Polyurethane Networks
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- How Trioxane Ring Opening Begins: Tracking the First Steps of Polymer Formation
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- Products from Carbon Dioxide: Pathways to a More Sustainable Chemical Industry
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- Catalysis and Scope of the Hydroamination of Non‐activated CC Multiple Bonds
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- Designing Smarter Polyurethane Materials: From Molecular Architecture to Shape Memory
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- Properties of CO2-derived Polyethercarbonate Polyols for Sustainable Polyurethane Materials
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- Reimagining Polymers: Using Carbon Dioxide as a Building Block
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- Inside Cover: Directing the Cleavage of Ester C−O Bonds by Controlling the Hydrogen Availability on the Surface of Coprecipitated Pd/Fe3 O4 (ChemCatChem 8/2016)
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- Catalytic Crossroads: Guiding Ester C–O Bond Scission via Hydrogen Availability
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- Tracking CO₂ Insertion into Aluminum–Oxygen Bonds to Make Cyclic Carbonates
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- Sustainable transparent films from CO2-based polymers.
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- Smart Polymer Design: Turning CO₂ and Light into Clear Transparent Plastics
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- Turning CO₂ into Sustainable Plastics with Smart Catalysts
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- Catalysts working on a conveyor belt
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- Click, Cure, and Capture: Turning CO₂ into Elastic Networks
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- Oligomeric poly(acetalcarbonates) obtained by repolymerisation of paraformaldehyde
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- Catalysts working on a conveyor belt
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- Surprisingly facile CO 2 insertion into cobalt alkoxide bonds: A theoretical investigation
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- CO 2 Chemistry
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- Anion Switch Unlocks Control Over CO₂ Copolymerization
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- Teamwork on the Catalyst: How Nitro and Aromatic Groups Boost Each Other
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- Smart Polymers Turn Catalysts On and Off
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- From CO₂ to Carbamates: A More Sustainable Route to Polyurethane Precursors
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- CO₂ Fixation That Matters: Which Products Really Help the Climate?
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- Adsorption-Driven Hydrogenation of Aromatics
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- Highly Active Catalysts for the Coupling of CO2and Epoxides to Five-Membered Carbonates
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- In Situ IR Spectroscopy for Following the Copolymerization of CO2and Epoxides
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- Monte Carlo Simulation of the Segment Length Distribution in the Copolymerization Product of Propylene Oxide and Carbon Dioxide
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- The Design of Formaldehyde-Based Polymers beyond POM
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- Synthetic Methodologies for Supported Ionic Liquid Materials
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- Supported Ionic Liquids as Part of a Building-Block System for Tailored Catalysts
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- Diffusive fractionation of carbon isotopes in γ-Fe: Experiment, models and implications for early solar system processes
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- Decoding Polymer Structure to Control Material Properties
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- Mattresses from Air: Turning CO₂ into Soft, Durable Foams
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- Cracking the Code: How Chromium Helps Tame CO₂ for Plastic Production
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- ChemInform Abstract: Carbon Dioxide as a Carbon Resource - Recent Trends and Perspectives
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- Methyl formate as a carbonylating agent for the catalytic conversion of phenol to methyl phenyl carbonate
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- Catalysts at work: Transforming carbon dioxide into carbonates with zinc and cobalt
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- How Carbon Dioxide Can Become a Resource
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- From CO₂ to Green Polymers: Following Chain Growth on Zinc-Based Sol–Gel Catalysts
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- Catalyst Control: Navigating Competing Pathways on Metal Surfaces
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- Turning CO₂ into Value: Catalytic Innovations for a Circular Carbon Economy
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- Keeping Nanoparticles Apart: How Ionic Liquids Stabilize Metal Clusters
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- The CO₂ Value Tree: Rooted in Carbon, Branching into Innovation
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- Chemical Technologies for Exploiting and Recycling Carbon Dioxide into the Value Chain
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- Silicon Cages: Unlocking Low-Energy, High-Speed Materials
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- Efficient Conversion of Bio-Based Polyols to Cyclic Carbonates
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- Copolymerisation von CO2 und Epoxiden: Verfahren und Anwendung
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- Beneath the Surface: How Nanoparticles Reshape Liquid Interfaces
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- ChemInform Abstract: Metal-Initiated Amination of Alkenes and Alkynes
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- ChemInform Abstract: Intramolecular Catalytic Addition of Amines to Alkynes.
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- ChemInform Abstract: Hydroamination of Alkenes and Alkynes
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- ChemInform Abstract: Anti-Markovnikov Reactions. Part 6. Rhodium-Catalyzed Amination of Vinylpyridines: Hydroamination versus Oxidative Amination.
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- ChemInform Abstract: Continuous Hydroamination in a Liquid-Liquid Two-Phase System.
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- Two-catalyst system for selective sulfide oxidation in a green CO₂/water medium
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- Understanding the Role of a Catalyst in Hydrogenating Nitriles to Amines
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- Single Step Preparation of Novel Hydrophobic Composite Films for Low-kApplications
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- Hydroamination: Direct Addition of Amines to Alkenes and Alkynes
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- Alkali Chloride Melts for Selective Ethane and Propane Dehydrogenation
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- Enhanced Enantioselectivity in Hydrogenation Reactions Using Supported Ionic Liquids
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- Palladium catalysts immobilized in thin films of ionic liquid for the direct addition of aniline to styrene
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- Taming Alkyl Transfer: A Mechanistic Look at Nitrile Hydrogenation over Raney-Co
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- Turning Ethane into Ethene: The Role of Supported Molten Salts in Catalysis
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- Reaction Engineering Aspects of Nitrile Hydrogenation
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- Tailoring Adsorption-Desorption Properties of Hydroamination Catalysts with Ionic Liquids
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- Tuning Catalyst Surface Chemistry to Optimize Selectivity in Nitrile Hydrogenation
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- Solvent Cages in Thin Films: A New Way to Hold Organometallic Catalysts
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- Hydroamination Catalyzed by a Pd Catalyst Immobilized in a Thin Film
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- Hydroamination of 1,3-cyclohexadiene with aryl amines catalyzed with acidic form zeolites
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- Switching Product Selectivity in Hydroamination Using Palladium Catalysts
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- Tracking Diffusion Limitations During Liquid-Phase Hydrogenation Reactions in Real Time
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- Activity and Selectivity Control in Reductive Amination of Butyraldehyde over Noble Metal Catalysts
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- Unlocking Chemical Cyclization: The Power of Lewis Acidic Complexes
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- Hydroamination: The Direct Addition of Amines to Alkenes and Alkynes
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- Tracking Hydrogen Atoms on the Surface of Cobalt Catalysts Using Neutron Scattering
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- Solid catalysts on the basis of supported ionic liquids and their use in hydroamination reactions
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- Generation and Characterization of Well-Defined Zn 2+ Lewis Acid Sites in Ion Exchanged Zeolite BEA
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- Heterogeneous catalysts for hydroamination reactions: structure–activity relationship
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- Hydroamination reactions catalysed with beta zeolites
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- Enantioselective Catalytic Hydroamination of Alkenes.
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- Enantioselective Catalytic Hydroamination of Alkenes
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- Enantioselektive katalytische Hydroaminierung von Alkenen
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- Novel hydroamination reactions in a liquid–liquid two-phase catalytic system
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- Hydroamination on homogeneous and heterogeneous catalysts: Kinetic study
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- A New Type of Low-ϰ Dielectric Films Based on Polysilsesquioxanes
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- Hydroamination – Heterogeneous
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- Hydroamination – Homogeneous
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- The role of protons in hydroamination reactions involving homogeneous and heterogeneous catalysts
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- Zinc-Catalyzed Chemistry at the Boundary of Polar and Non-Polar Liquids
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- Hydroamination of 6-aminohex-1-yne over zinc based homogeneous and zeolite catalysts
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- Spinning Rings from Alkynes and Amines with Palladium Magic
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- Double Serve: How Acids and Metals Team Up to Supercharge Reactions
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- Direct Addition of Amine N-H to CC Triple Bonds
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- Zinc in the Framework: Fine-Tuned Zeolites Outperform Homogeneous Catalysts
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- Hydroamination Made Easy: Smart Catalysts for Building Nitrogen Rings
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- Rhodium-Catalyzed Amination of Vinylpyridines: Hydroamination versus Oxidative Amination
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- The First Rhodium-Catalyzed Anti-Markovnikov Hydroamination: Studies on Hydroamination and Oxidative Amination of Aromatic Olefins
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- The First Rhodium-Catalyzed Anti-Markovnikov Hydroamination: Studies on Hydroamination and Oxidative Amination of Aromatic Olefins
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- Metal Catalysts at Work: Fast-Tracking Ring Formation
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- New cationic rhodium–amine complexes and their implication in the catalytic anti-Markovnikov oxidative amination of styrenes
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- Intramolecular catalytic addition of amines to alkynes
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- Metal-Initiated Amination of Alkenes and Alkynes †
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- Fine-tuning Metal Complexes with Bulky Aromatic Phosphines
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- Chemistry of chelate-stabilized aryloxopalladium(II) complexes: syntheses, X-ray crystal structures and formation of CH…O hydrogen-bonds
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- How Designer Ligands Shape Platinum-Platinum Metal Bonds
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- Creating Tiny Carbon Structures: Insights and Potential Applications
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- Cone Angles: Real-World Data from Thousands of Crystal Structures
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- Packing Power: Bulky Ligands Create Unique Spaces for Guest Molecules
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- X-ray structure of Pt(dipic)(H2O) (where H2dipic = 2,6-pyridinedicarboxylic acid) ; the first structurally characterized mononuclear complex with a PtII(N1O3) donor atom set
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- Magnetic Properties of a Carboranes
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- Synthesis, structural characterization and photophysical properties of ethyne-gold(I) complexes
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- Exploring Magnetic Properties of Tiny Carbon-Based Spheres and their Salts
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- Molecular Crystals Made from Iron-Linked Carbon Spheres and Radical Anions
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- Unexpected Bonds: When Electron Clouds Encounter Polarized Molecules
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- Coordination polymer made from silver and gadolinium heterometallic complexes
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- Hydroamination of Alkenes and Alkynes
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