发明名称 Method and apparatus for making uniform and ultrasmall nanoparticles
摘要 A system comprising: a plasma production chamber configured to produce a plasma; a reaction chamber vaporize a precursor material with the plasma to form a reactive mixture; a quench chamber having a frusto-conical surface and a quench region formed within the quench chamber between an ejection port of the reaction chamber and a cooled mixture outlet, wherein the quench region configured to receive the reactive mixture from the ejection port, to cool the reactive mixture to form a cooled mixture, and to supply the cooled mixture to the cooled mixture outlet; and a conditioning fluid injection ring disposed at the ejection port and configured to flow a conditioning fluid directly into the reactive mixture as the reactive mixture flows through the ejection port, thereby disturbing the flow of the reactive mixture, creating turbulence within the quench region and cooling the reactive mixture to form a cooled mixture comprising condensed nanoparticles.
申请公布号 US9216398(B2) 申请公布日期 2015.12.22
申请号 US201414165438 申请日期 2014.01.27
申请人 SDCmaterials, Inc. 发明人 Biberger Maximilian A.;Layman Frederick P.
分类号 B01J19/08;B01J19/00;B22F9/12;F28D15/00;F28F27/00;B01J25/00;B01J25/02;B01J2/16;F28D7/02;F28D7/08 主分类号 B01J19/08
代理机构 Morrison & Foerster LLP 代理人 Morrison & Foerster LLP
主权项 1. A method of producing nanoparticles, the method comprising: vaporizing a precursor material with a plasma stream within a reaction chamber, thereby forming a reactive mixture stream comprising the vaporized precursor material entrained within the plasma stream; flowing the reactive mixture stream through an ejection port of the reaction chamber and into a quench region of a quench chamber having a frusto-conical surface that narrows as it extends away from the ejection port of the reaction chamber, wherein the ejection port is located within a frusto-conical-shaped portion of the quench chamber; flowing a conditioning fluid through an injection ring disposed at the ejection port of the reaction chamber into the reactive mixture stream as the reactive mixture stream flows through the ejection port of the reaction chamber, thereby disturbing the flow of the reactive mixture stream and creating turbulence within the quench region; quenching the reactive mixture stream within the quench region to form a cooled mixture stream comprising condensed nanoparticles; and flowing the cooled mixture stream through a cooled mixture outlet of the quench chamber.
地址 Tempe AZ US