Basic Research Needs: Catalysis for Energy
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- Type
- report
- Published
- 2008-03-11
- Cited by
- 106
- References
- 0
- Access
- Open access
- OpenAlex
- https://openalex.org/W1507751569
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:94024083
Keywords
Nanotechnology, Energy (signal processing), Biochemical engineering, Chemical energy, Efficient energy use
References
- 98/03428 Design, synthesis, and use of cobalt-based Fischer-Tropsch synthesis catalysts
- Zeolites and mesoporous materials at the dawn of the 21st century
- Investigation of biomass- and polymer-based carbon materials using 13C high-resolution solid-state NMR
- Renewable Alkanes by Aqueous‐Phase Reforming of Biomass‐Derived Oxygenates
- In Situ Time‐Resolved Dynamic Surface Events on the Pt/C Cathode in a Fuel Cell under Operando Conditions
- Beyond Oil and Gas: The Methanol Economy
- Baseline Technical and Economic Assessment of a Commercial Scale Fischer-Tropsch Liquids Facility
- 06/00995 Evaluation of a constant volume sampling setup for residential biomass fired appliances — influence of dilution conditions on particulate and PAH emissions
- Biomass as Feedstock for a Bioenergy and Bioproducts Industry: The Technical Feasibility of a Billion-Ton Annual Supply
- Catalysis looks to the future
- Hydrated Dibromodioxomolybdenum(VI) Supported on Zn‐MCM‐48 for Facile Oxidation of Methane
- Current status of transition-state theory
- 05/00709 Syngas production by biomass gasification using Rh/CeO2/SiO2 catalysts and fluidized bed reactor
- Catalytic hydrodeoxygenation
- Synthesis of Transportation Fuels from Biomass: Chemistry, Catalysts, and Engineering
- Elucidation of the Electrochemical Activation of Water over Pd by First Principles
- Petroleomics: The Next Grand Challenge for Chemical Analysis
- Glycerol as a Source for Fuels and Chemicals by Low‐Temperature Catalytic Processing
- A review of catalytic issues and process conditions for renewable hydrogen and alkanes by aqueous-phase reforming of oxygenated hydrocarbons over supported metal catalysts
Cited by
- EMSL and Institute for Integrated Catalysis (IIC) Catalysis Workshop
- Catalytic applications of bio-inspired nanomaterials
- Green diesel production via catalytic hydrogenation/decarboxylation of triglycerides and fatty acids of vegetable oil and brown grease
- Harnessing the Department of Energy’s High-Performance Computing Expertise to Strengthen the U.S. Chemical Enterprise
- Biofuels Production Via Catalytic Hydrocracking Of Ddgs Corn Oil And Hydrothermal Decarboxylation Of Oleic Acid Over Transition Metal Carbides Supported On Al-Sba-15
- Probe reactions of alcohols and alkanes for understanding catalytic properties of microporous materials and alumina oxide solid acid catalysts.
- Dihydrogen Phosphate Stabilized Ruthenium(0) Nanoparticles: Efficient Nanocatalyst for The Hydrolysis of Ammonia-Borane at Room Temperature
- A microreactor system for high-pressure, multiphase homogeneous and heterogeneous catalyst measurements under continuous flow
- Sustainable fuel, food, fertilizer and ecosystems through a global artificial photosynthetic system: overcoming anticompetitive barriers
- Bodipy-ruthenium(II) tris-bipyridyl dyads for homogeneous photochemical oxidations
- Metal-doped carbon xerogels for the electro-catalytic conversion of CO2 to hydrocarbons
- Analysis of Catalytic Gas Products Using Electron Energy-Loss Spectroscopy and Residual Gas Analysis for Operando Transmission Electron Microscopy
- Characterization and analysis methods for the examination of the heterogeneous solid oxide fuel cell electrode microstructure. Part 1: Volumetric measurements of the heterogeneous structure
- Elucidation of Diels-Alder Reaction Network of 2,5-Dimethylfuran and Ethylene on HY Zeolite Catalyst
- Optofluidics for energy applications
- Tuning acid–base cooperativity to create next generation silica-supported organocatalysts
- Catalysis Center for Energy Innovation for Biomass Processing: Research Strategies and Goals
- Van der Waals interactions determine selectivity in catalysis by metallic gold.
- Aqueous CO2 reduction at very low overpotential on oxide-derived Au nanoparticles.
- Towards solar fuels from water and CO2.
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