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    • 1. 发明申请
    • SCANNING PROBE MICROSCOPY TIPS COMPOSED OF NANOPARTICLES AND METHODS TO FORM SAME
    • 扫描探针组成的纳米微粒及其形成方法
    • US20070256480A1
    • 2007-11-08
    • US11775316
    • 2007-07-10
    • Charles BlackAdam CohenChristopher MurrayRobert Sandstrom
    • Charles BlackAdam CohenChristopher MurrayRobert Sandstrom
    • G01B5/28
    • G01Q70/16G01Q70/14Y10S977/924Y10T428/254
    • A structure and method for improving the spatial resolution of a scanning probe microscope (SPM) tip, which has been coated with a layer of chemically-synthesized nanoparticles. The nanoparticles are either single-species or heterogeneous, such that the single-species nanoparticles can be either ferromagnetic, paramagnetic, superparamagnetic, antiferromagnetic, ferrimagnetic, magneto-optic, ferroelectric, piezoelectric, superconducting, semiconducting, magnetically-doped semiconducting, insulating, fluorescent, or chemically catalytic. The layer of nanoparticles is at least two nanoparticles thick, or alternatively, is a single layer of nanoparticles thick, or alternatively, is a single layer of nanoparticles thick and covers only the tip apex portion of the tip, or alternatively, only a single nanoparticle is affixed to the tip apex. Alternatively, the layer of nanoparticles is transformed into an electrically-continuous magnetic film by annealing at a high temperature.
    • 用于改善扫描探针显微镜(SPM)尖端的空间分辨率的结构和方法,其已经涂覆有化学合成的纳米颗粒层。 纳米颗粒是单种或非均质的,使得单种纳米颗粒可以是铁磁性,顺磁性,超顺磁性,反铁磁性,亚铁磁性,磁光学,铁电体,压电,超导,半导体,磁掺杂半导体,绝缘,荧光 ,或化学催化。 纳米颗粒层是至少两个纳米颗粒厚度,或者可选地,是单层纳米颗粒的厚度,或者可选地,单层纳米颗粒是厚的,并且仅覆盖尖端的顶端部分,或者仅仅是单个纳米颗粒 贴在尖端顶端。 或者,通过在高温下退火将纳米颗粒层转变成电连续的磁性膜。
    • 5. 发明授权
    • Scrubbing device
    • 擦洗装置
    • US08122554B2
    • 2012-02-28
    • US11874390
    • 2007-10-18
    • Ryan A. SchemmelChristopher MurrayMark StratfordBenjamin J. StruttPatrick Marcil
    • Ryan A. SchemmelChristopher MurrayMark StratfordBenjamin J. StruttPatrick Marcil
    • A46B13/04A47L11/14A47L11/18
    • A47L13/26A46B13/001Y10T29/53
    • An apparatus with a main unit, a dispenser, a clamp and a clamp structure. The main unit includes a housing, a battery in the housing, a motor in the housing and connected to the battery, and an output drive shaft driven by the motor. The dispenser includes a body that defines a body aperture and which has a reservoir for storing a fluid, and a nozzle in fluid communication with the reservoir. The dispenser is configured to permit the stored fluid to be dispensed from the reservoir through the nozzle. The clamp is coupled to either the main unit or the dispenser and includes a pivotable engagement member. The clamp structure is coupled to the other one of the main unit and the dispenser and includes a second engagement member that can be releasably engaged to the engagement member. The housing is received through the body aperture.
    • 具有主单元,分配器,夹具和夹具结构的设备。 主单元包括壳体,壳体中的电池,壳体中的电动机并连接到电池,以及由电动机驱动的输出驱动轴。 分配器包括限定主体孔的主体,其具有用于存储流体的储存器和与储存器流体连通的喷嘴。 分配器被配置为允许储存的流体通过喷嘴从储存器分配。 夹具联接到主单元或分配器,并且包括可枢转的接合构件。 夹具结构联接到主单元和分配器中的另一个,并且包括能够可释放地接合到接合构件的第二接合构件。 外壳通过身体孔径接收。