Electromagnetic control of chemical catalysis

A chemical reaction and electromagnetic radiation technology, applied in organic chemistry, gaseous chemical plating, chemical instruments and methods, etc., can solve problems such as controlling catalyst temperature

Inactive Publication Date: 2007-12-19
莱斯利・格林歌德 +2
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

[0005] An inherent problem with these conventional heating methods is the difficulty in temporally and spatially controlling the temperature of the catalyst, the vicinity of the catalyst and / or the amount of heat applied

Method used

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  • Electromagnetic control of chemical catalysis
  • Electromagnetic control of chemical catalysis
  • Electromagnetic control of chemical catalysis

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Embodiment Construction

[0062]The description of example embodiments is provided and reference is made to the accompanying drawings which form a part hereof and which are shown by way of illustration of example embodiments of the teachings herein. It is to be understood that other embodiments and uses of the teachings herein may be utilized and structural and functional changes may be made without departing from the spirit and scope of the invention. In addition, the drawings are for illustration only, and do not relate to or be limited to specific dimensions, scales or ratios.

[0063] Processes involving microstructures or nanostructures and uses thereof are provided. More specifically, in one aspect, the present invention provides a method, system and corresponding structures, and their use in forming nanostructures and microstructures using novel deposition processes useful for various applications. As just one example, the deposition process may be applied to form one or more films in the manuf...

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Abstract

The present disclosure methods and systems that provide heat, via at least Photon-Electron resonance, also known as excitation, of at least a particle utilized, at least in part, to initiate and / or drive at least one catalytic chemical reaction. In some implementations, the particles are structures or metallic structures, such as nanostructures. The one or more metallic structures are heat at least as a result of interaction of incident electromagnetic radiation, having particular frequencies and / or frequency ranges, with delocalized surface electrons of the one or more particles. This provides a control of catalytic chemical reactions, via spatial and temporal control of generated heat, on the scale of nanometers as well as a method by which catalytic chemical reaction temperatures are provided .

Description

[0001] related application [0002] This application claims the benefit of and priority to U.S. Provisional Patent Application No. 60 / 529,869, filed December 15, 2003, entitled "Method for Chemical Vapor Deposition of Nanostructures of Arrays: Photoelectrically Assisted CVD," which It is incorporated herein by reference in its entirety. technical field [0003] The present invention relates to localized heating of micro- or nanostructures and related methods of use and application. More specifically, in one aspect, the teachings herein also provide for very localized heating of specific nano- and microstructures to affect catalytic chemical reactions. In one aspect, as taught herein, heat is provided to a chemical reaction that occurs on and / or adjacent to a provided structure, or a majority thereof, that would be induced by at least Photoelectric resonance generates heat. Background technique [0004] The use of catalysts in large scale, continuous chemical processes is ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C23C8/00C23C16/00C07C7/00
CPCB01J19/0046B01J2219/00495B01J2219/00527B01J2219/00747B82Y30/00C23C16/483C23C16/48C23C16/511C23C16/52
Inventor 莱斯利·格林歌德大卫·A·博伊德马克·布隆格斯马
Owner 莱斯利・格林歌德
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