Production Of Fine Particles Of Functional Ceramic By Using Pulsed Laser
    4.
    发明申请
    Production Of Fine Particles Of Functional Ceramic By Using Pulsed Laser 审中-公开
    通过脉冲激光生产功能性陶瓷微粒

    公开(公告)号:US20130327987A1

    公开(公告)日:2013-12-12

    申请号:US13968464

    申请日:2013-08-16

    CPC classification number: C09K11/025 C09K11/08 Y10T428/2982

    Abstract: A method of forming nanometer sized fine particles of functional ceramic from a bulk functional ceramic, particularly fine particles of phosphorous ceramics from a bulk phosphor material is disclosed. The method relies on irradiation of a bulk phosphorous ceramic in a liquid with an ultrashort-pulsed-laser-fragmentation beam to thereby form nanometer sized particles of the phosphorous ceramic. The method is unique in that the generated particles retain the chemical and crystalline properties of the bulk phosphorous ceramic. The generated solutions are stable colloids from which the particles can be isolated or used as is.

    Abstract translation: 公开了一种从体积功能陶瓷形成纳米尺寸的功能性陶瓷微粒的方法,特别是来自块状磷光体材料的磷陶瓷的细颗粒的方法。 该方法依赖于用超短脉冲激光破碎光束在液体中照射大块磷陶瓷,从而形成纳米尺寸的磷陶瓷颗粒。 该方法的独特之处在于所产生的颗粒保留了大块磷陶瓷的化学和结晶性质。 产生的溶液是稳定的胶体,颗粒可从其中分离或原样使用。

    Production Of Organic Compound Nanoparticles With High Repetition Rate Ultrafast Pulsed Laser Ablation In Liquids
    5.
    发明申请
    Production Of Organic Compound Nanoparticles With High Repetition Rate Ultrafast Pulsed Laser Ablation In Liquids 审中-公开
    生产具有高重复率的超快脉冲激光烧蚀的有机复合纳米粒子在液体中

    公开(公告)号:US20150258631A1

    公开(公告)日:2015-09-17

    申请号:US14629617

    申请日:2015-02-24

    Abstract: Disclosed is a method of producing a chemically pure and stably dispersed organic nanoparticle colloidal suspension using an ultrafast pulsed laser ablation process. The method comprises irradiating a target of an organic compound material in contact with a poor solvent with ultrashort laser pulses at a high repetition rate and collecting the nanoparticles of the organic compound produced. The method may be implemented with a high repetition rate ultrafast pulsed laser source, an optical system for focusing and moving the pulsed laser beam, an organic compound target in contact with a poor solvent, and a solvent circulating system to cool the laser focal volume and collect the produced nanoparticle products. By controlling various laser parameters, and with optional poor solvent flow movement, the method provides stable colloids of dispersed organic nanoparticles in the poor solvent in the absence of any stabilizing agents.

    Abstract translation: 公开了使用超快脉冲激光烧蚀工艺制备化学纯的和稳定分散的有机纳米颗粒胶体悬浮液的方法。 该方法包括用高重复率的超短激光脉冲对与有害化合物接触的有机化合物材料进行照射,并收集生成的有机化合物的纳米颗粒。 该方法可以用高重复率超快脉冲激光源,用于聚焦和移动脉冲激光束的光学系统,与不良溶剂接触的有机化合物靶和溶剂循环系统来实现,以冷却激光焦点体积和 收集生产的纳米颗粒产品。 通过控制各种激光参数,并且具有可选的不良溶剂流动运动,该方法在不存在任何稳定剂的情况下在不良溶剂中提供分散的有机纳米颗粒的稳定胶体。

    IRON PHOSPHATES: NEGATIVE ELECTRODE MATERIALS FOR AQUEOUS RECHARGEABLE SODIUM ION ENERGY STORAGE DEVICES
    7.
    发明申请
    IRON PHOSPHATES: NEGATIVE ELECTRODE MATERIALS FOR AQUEOUS RECHARGEABLE SODIUM ION ENERGY STORAGE DEVICES 审中-公开
    铁磷酸盐:用于水质可充电钠离子能量储存装置的负极电极材料

    公开(公告)号:US20130244100A1

    公开(公告)日:2013-09-19

    申请号:US13827768

    申请日:2013-03-14

    Abstract: Various embodiments of the present invention relate to electrode materials based on iron phosphates that can be used as the negative electrode materials for aqueous sodium ion batteries and electrochemical capacitors. At least one embodiment includes a negative electrode material for an aqueous sodium ion based energy storage device. The negative electrode material with a non-olivine crystal structure includes at least one phosphate selected from iron hydroxyl phosphate, Na3Fe3(PO4)4, Na3Fe(PO4)2, iron phosphate hydrate, ammonium iron phosphate hydrate, carbon-coated or carbon-mixed sodium iron phosphate. At least one embodiment includes an energy storage device that includes such a negative electrode material.

    Abstract translation: 本发明的各种实施方案涉及可用作钠盐水溶液和电化学电容器的负极材料的基于磷酸铁的电极材料。 至少一个实施方案包括用于钠盐水溶液的能量储存装置的负极材料。 具有非橄榄石晶体结构的负极材料包括选自磷酸铁,Na 3 Fe 3(PO 4)4,Na 3 Fe(PO 4)2,磷酸铁水合物,磷酸铁铵水合物,碳涂覆或碳混合物中的至少一种磷酸盐 磷酸铁钠 至少一个实施例包括包括这种负极材料的能量存储装置。

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