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Initiation and Control of Nanothermal Plasmonic Engineering

机译:纳米热等离子体工程的启动与控制

摘要

The present disclosure concerns a means to use at least a form of electromagnetic excitation or light-matter interaction, including solar or laser energy to generate localized conditions that enable initiation and spatial and temporal control of catalysis, chemical reactions, deposition, synthesis, photocatalysis, electrocatalysis and catalytic processes. Initiation and spatial and temporal control may be obtained by restricting and directing the electromagnetic excitation or light-matter interactions to specific objects or features embedded or located in or on a host matrix material or substrate. In some implementations this provides a means to use electromagnetic excitation to initiate and control chemical synthesis or reactions without entirely or partially heating any of or all of the reaction chamber, reactor mass, reaction precursors and products, or reactor substrate. It may further provide for the use of temperature sensitive elements or substrates. The method of use could include initiation and control of light-matter interactions addressed at optical and other frequencies to generate controlled localized thermal conditions. A further implementation concerns a means to employ electromagnetic excitation or light-matter interactions to generate localized thermal conditions to initiate or control or cause the combination, separation, reformation or reclamation of a gas, a combination of gasses, a material or a combination of materials in the form of a gas, plasma, solid or liquid. The method of use disclosed could provide a means to initiate and control chemical reactions for the generation, use, transfer and output of controlled localized thermal heat or energy. The method of use disclosed could provide a means to realize and control local thermal conditions down to or below the length scale of a single nanometer and down to or below the timescale of a single picosecond. In some implementations surface plasmon excitations may be used to realize and control local thermal conditions down to or below the length scale of a single nanometer and down to or below the timescale of a single picosecond.
机译:本公开涉及一种使用至少一种形式的电磁激发或光-物质相互作用(包括太阳能或激光能)来产生能够实现催化,化学反应,沉积,合成,光催化的引发和空间和时间控制的局部条件的手段,电催化和催化过程。可以通过将电磁激发或光物质相互作用限制和定向到嵌入或位于主体基质材料或基质中或之上的特定对象或特征来获得启动和空间和时间控制。在一些实施方式中,这提供了一种使用电磁激发来引发和控制化学合成或反应而不完全或部分加热反应室,反应器质量,反应前体和产物或反应器基质中的任何一个或全部的手段。它可以进一步提供对温度敏感的元件或基板的使用。使用方法可以包括启动和控制以光学和其他频率处理的光-物质相互作用,以产生受控的局部热条件。进一步的实施方式涉及一种利用电磁激发或光-物质相互作用产生局部热条件以引发或控制或引起气体,气体的组合,材料,材料或材料的组合,分离,重整或回收的装置。以气体,等离子,固体或液体的形式存在。公开的使用方法可以提供一种引发和控制化学反应的手段,以进行受控的局部热能或能量的产生,使用,转移和输出。所公开的使用方法可以提供一种手段,以实现和控制局部热条件,所述局部热条件低至或低于单个纳米的长度尺度,并且低至或低于单个皮秒的时间尺度。在一些实施方式中,表面等离子体激元激发可以用于实现和控制局部热条件,该局部热条件低至或低于单个纳米的长度标度并且低至或低于单个皮秒的时间标度。

著录项

  • 公开/公告号US2008154431A1

    专利类型

  • 公开/公告日2008-06-26

    原文格式PDF

  • 申请/专利权人 ANTHONY DEFRIES;MARK BRONGERSMA;

    申请/专利号US20070781889

  • 发明设计人 MARK BRONGERSMA;ANTHONY DEFRIES;

    申请日2007-07-23

  • 分类号G01J5/00;B01J19/08;

  • 国家 US

  • 入库时间 2022-08-21 20:14:04

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