Advancing the Frontiers in Nanocatalysis, Biointerfaces, and Renewable Energy Conversion by Innovations of Surface Techniques
Top Cited Papers
- 4 November 2009
- journal article
- review article
- Published by American Chemical Society (ACS) in Journal of the American Chemical Society
- Vol. 131 (46), 16589-16605
- https://doi.org/10.1021/ja9061954
Abstract
The challenge of chemistry in the 21st century is to achieve 100% selectivity of the desired product molecule in multipath reactions (“green chemistry”) and develop renewable energy based processes. Surface chemistry and catalysis play key roles in this enterprise. Development of in situ surface techniques such as high-pressure scanning tunneling microscopy, sum frequency generation (SFG) vibrational spectroscopy, time-resolved Fourier transform infrared methods, and ambient pressure X-ray photoelectron spectroscopy enabled the rapid advancement of three fields: nanocatalysts, biointerfaces, and renewable energy conversion chemistry. In materials nanoscience, synthetic methods have been developed to produce monodisperse metal and oxide nanoparticles (NPs) in the 0.8−10 nm range with controlled shape, oxidation states, and composition; these NPs can be used as selective catalysts since chemical selectivity appears to be dependent on all of these experimental parameters. New spectroscopic and microscopic techniques have been developed that operate under reaction conditions and reveal the dynamic change of molecular structure of catalysts and adsorbed molecules as the reactions proceed with changes in reaction intermediates, catalyst composition, and oxidation states. SFG vibrational spectroscopy detects amino acids, peptides, and proteins adsorbed at hydrophobic and hydrophilic interfaces and monitors the change of surface structure and interactions with coadsorbed water. Exothermic reactions and photons generate hot electrons in metal NPs that may be utilized in chemical energy conversion. The photosplitting of water and carbon dioxide, an important research direction in renewable energy conversion, is discussed.Keywords
This publication has 127 references indexed in Scilit:
- Carbon Monoxide Adsorption and Oxidation on Monolayer Films of Cubic Platinum Nanoparticles Investigated by Infrared−Visible Sum Frequency Generation Vibrational SpectroscopyThe Journal of Physical Chemistry B, 2006
- Scanning Tunneling Microscopy (STM) at High Pressures. Adsorption and Catalytic Reaction Studies on Platinum and Rhodium Single Crystal SurfacesCatalysis Letters, 2006
- High technology catalysts towards 100% selectivityCatalysis Today, 2005
- The Structures and Reactions of Linear and Cyclic C6Hydrocarbons Adsorbed on the Pt(111) Crystal Surface Studied by Sum Frequency Generation Vibrational Spectroscopy: Pressure, Temperature, and H2Coadsorption EffectsThe Journal of Physical Chemistry B, 2004
- High-Coverage Structures of Carbon Monoxide Adsorbed on Pt(111) Studied by High-Pressure Scanning Tunneling MicroscopyThe Journal of Physical Chemistry B, 2004
- The Synthesis of Ammonia over a Ruthenium Single CrystalJournal of Catalysis, 1998
- Photoreduction of carbon dioxide on quantized semiconductor nanoparticles in solutionCatalysis Today, 1997
- Electrocatalysis in the anodic evolution of oxygen and chlorineElectrochimica Acta, 1984
- Verwendung von Schwingquarzen zur W gung d nner Schichten und zur Mikrow gungThe European Physical Journal A, 1959
- Nickel, Copper and Some of their Alloys as Catalysts for Ethylene Hydrogenation1Journal of the American Chemical Society, 1954