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Tunable size of nano-active material on nano-support

An active material and nanocarrier technology, applied in nanotechnology, nanotechnology, metal material coating technology and other directions, can solve the problems of lack of precision in size control of nano-active particles, lack of precise control of the total amount of nano-active materials, and dissatisfaction.

Inactive Publication Date: 2014-04-23
斯得玛特利斯有限责任公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

[0007] However, existing methods for fabricating nanoparticles on support substructures lack precision in the size control of nanoactive particles and lack elements for precise control over the total amount (or loading) of nanoactive materials in the substructure.
These deficiencies in the art lead to unsatisfactory or imprecise reactions and reaction rates

Method used

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  • Tunable size of nano-active material on nano-support
  • Tunable size of nano-active material on nano-support
  • Tunable size of nano-active material on nano-support

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Embodiment Construction

[0018] Embodiments of the manufacturing method and system will be described in detail below with reference to the accompanying drawings. While discussing methods and systems in conjunction with the following embodiments, it is not limited to the methods and systems of these embodiments and examples. On the contrary, the method and system is intended to cover all alternatives, modifications and equivalents included within the scope of the method and system as defined by the claims. Furthermore, in the following detailed description, several specific details are set forth to more fully explain the method and system. However, it will be apparent to those skilled in the art that these specific details are not required to implement these methods and systems. In other embodiments, well-known methods, procedures, components and procedures have not been described in detail so as not to unnecessarily obscure the optical detection modules and recursive algorithms.

[0019] figure 1 M...

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Abstract

A method of tuning the size of an nano-active material on a nano-carrier material comprises: providing a starting portion of a carrier material and a starting portion of an active material in a first ratio; adjusting the first ratio, forming a second ratio, thereby tuning the ratio of active material and carrier material; combining the portion of the active material in a vapor phase and the portion of the carrier material in a vapor phase, forming a conglomerate in a vapor phase; and changing the phase of the conglomerate, thereby forming nano-spheres comprising a nano-carrier material decorated with a nano-active material, wherein the size of the nano-active material is dependent upon the second ratio.

Description

[0001] CROSS-REFERENCE TO RELATED APPLICATIONS: [0002] This application claims priority from US Provisional Patent Application 61 / 284,329, filed on December 15, 2009, entitled: MATERIALS PROCESSING, the entire contents of which are incorporated herein by reference. technical field [0003] The present application relates to the field of manufacture of nano-active materials. In particular, it relates to the optimization and customization of the size and concentration of nanoactive materials on substructures. Background technique [0004] Nanomaterials are rapidly gaining popularity in the scientific community, as well as in commercial and industrial applications. The means of mechanical manipulation and chemical reactions themselves are often carried out using nanoparticles. However, other manipulations include the use of substructures to support the nanoscale components of the reaction. Typically, nanoparticles are impregnated into a substructure, and the substructure i...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B01J27/13B01J35/00
CPCB82Y30/00B01J37/009Y02T10/22B01J23/42B28B23/0087B01J23/8926B01J37/00B32B7/12B01J35/0013B32B37/14B01J37/349B82Y40/00B01J37/32C23C4/127B01J37/0211B01J37/0238B01J37/0203C23C4/134B01J35/393B01J35/23
Inventor 殷青华齐熙旺马西米兰·A·比伯格戴维·利姆
Owner 斯得玛特利斯有限责任公司
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