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    • 1. 发明申请
    • Molecularly imprinted polymers (MIPS) for the selective removal of inorganic contaminants from liquids
    • 用于从液体中选择性去除无机污染物的分子印迹聚合物(MIPS)
    • US20070090058A1
    • 2007-04-26
    • US11520448
    • 2006-09-12
    • Glen Southard
    • Glen Southard
    • B01D21/01
    • B01J20/26B01D1/00B01J20/268C02F1/285
    • A method of creating a cationic molecularly imprinted polymer bead that can bind inorganic target compounds is disclosed and described. The cationic molecularly imprinted polymer bead can be formed by complexing a target compound with a cationic ligand, polymerizing the cationic ligands to form the bead, and then extracting the target compound from the bead. The cationic ligand complex can have an octanol water partition coefficient of about 1 to about 10. The cationic molecularly imprinted polymer bead can have a porous structure containing a plurality of complexing cavities for selectively bind specific target compounds for removal from potable water, mine effluent, industrial effluent, or other fluids.
    • 公开和描述了一种产生可结合无机目标化合物的阳离子分子印迹聚合物珠粒的方法。 阳离子分子印迹聚合物珠粒可以通过使目标化合物与阳离子配体络合而形成,使阳离子配体聚合形成珠粒,然后从珠粒提取目标化合物。 阳离子配体配合物可以具有约1至约10的辛醇水分配系数。阳离子分子印迹聚合物珠可以具有多孔结构,其包含多个络合空腔,用于选择性地结合特定目标化合物以从饮用水中排出, 工业废水或其他流体。
    • 2. 发明申请
    • Processable molecularly imprinted polymers
    • 可加工的分子印迹聚合物
    • US20070197746A1
    • 2007-08-23
    • US10599062
    • 2004-10-04
    • Glen SouthardGeorge Murray
    • Glen SouthardGeorge Murray
    • C08F4/44
    • G01N33/53G01N33/543G01N2600/00
    • A process is provided herein for preparing molecularly imprinted polymers for detecting a target analyte by Reversible Addition Fragmentation Chain Transfer (RAFT). The process includes providing a complex having the formula L?3#191M wherein L is a β-diketone ligand containing a chain transfer moiety and L?3#191 can be the same or different ligands, and M is a lanthanide element; reacting the complex with the target analyte to provide an adduct containing the target analyte; co-polymerizing the adduct with a monomer and cross-linking agent to provide a polymer; and, removing the target analyte from the polymer to provide the molecularly imprinted polymer.
    • 本文提供了一种制备用于通过可逆加成分段链转移(RAFT)检测目标分析物的分子印迹聚合物的方法。 该方法包括提供具有式L 3#191M的络合物,其中L是含有链转移部分的β-二酮配体,L 3 3#191可以是相同或不同的配体,M是镧系元素; 使复合物与靶分析物反应,以提供含有目标分析物的加合物; 将加合物与单体和交联剂共聚以提供聚合物; 并从聚合物中除去目标分析物以提供分子印迹的聚合物。
    • 3. 发明授权
    • Neutron detection based on boron activated liquid scintillation
    • 基于硼激活液体闪烁的中子检测
    • US07126148B2
    • 2006-10-24
    • US10621595
    • 2003-07-17
    • George M. MurrayHarvey W. KoGlen Southard
    • George M. MurrayHarvey W. KoGlen Southard
    • G01V5/10
    • G01T3/06Y10S250/90
    • A system for detecting neutron radiation. A liquid cocktail mixture comprised of a neutron absorber and a scintillator is housed in a Teflon® tube having a mirror at one end of the tube and a windowed portal at the other end of the tube. Neutrons that penetrate the tube react with the neutron absorber producing ionization that excites a scintillator to produce photons. A photo-multiplier tube is coupled with the windowed portal for receiving photons and converting the photons to electrical signals. A processing device is coupled to the photo-multiplier output for receiving and analyzing the electrical signals so as to provide a measurement pertaining to the presence and relative strength of neutron radiation. The tube can be adapted to function as a portable survey instrument. Alternatively, the tube can be stretched to cover large apertured areas. In such implementations a wavelength shifter is employed to convert light emitted to another wavelength giving a multiplier effect necessary for long light guides.
    • 一种用于检测中子辐射的系统。 由中子吸收剂和闪烁体组成的液体混合物混合物容纳在管的一端具有反射镜的Teflon管和管的另一端的窗口入口。 渗透管的中子与中子吸收剂反应产生电离,激发闪烁体产生光子。 光电倍增管与窗口门户耦合以接收光子并将光子转换成电信号。 处理装置耦合到光电倍增器输出端,用于接收和分析电信号,以提供与中子辐射的存在和相对强度有关的测量。 该管可适用于便携式测量仪器。 或者,管可以被拉伸以覆盖大的有孔区域。 在这种实现中,使用波长移位器将发射的光转换成另一波长,给出长光导所需的乘法器效应。