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    • 71. 发明申请
    • METHODS AND DEVICES FOR CRYSTALLIZATION BY CONTROLLED EVAPORATION
    • 通过控制蒸发进行结晶的方法和装置
    • US20120241100A1
    • 2012-09-27
    • US13480747
    • 2012-05-25
    • Jack BargerJames SinclairMichael P. Emery
    • Jack BargerJames SinclairMichael P. Emery
    • B01D1/14
    • B01D3/346B01D1/14B01L3/06B01L3/50853B01L2200/0678B01L2300/048B01L2300/049B01L2300/0829G01N2001/4027
    • Methods and devices for controlled evaporation of solvent from a solution are provided. In one embodiment, a method for controlled evaporation of solvent from at least one solution includes filling a selected first set of wells in a multi-well plate with a first solution comprising at least one first solvent. The method also includes attaching an inlet manifold to the plate, the inlet manifold comprising an inlet port connected to and in fluid communication only with each of the wells in the selected first set of wells. The method further includes attaching an exhaust manifold to the plate, the exhaust manifold comprising an exhaust port connected to and in fluid communication only with each of the wells in the selected first set of wells. The method also includes introducing a gas into the inlet port and removing solvent vapor from the selected first set of wells.
    • 提供了从溶液中控制溶剂蒸发的方法和装置。 在一个实施方案中,用于从至少一种溶液控制蒸发溶剂的方法包括用包含至少一种第一溶剂的第一溶液填充多孔板中选定的第一组孔。 该方法还包括将入口歧管连接到板上,入口歧管包括连接到所选择的第一组井中的每个井中并仅与其中的每个井连通并且仅在其中流体连通的入口歧管。 所述方法还包括将排气歧管连接到所述板上,所述排气歧管包括与所选择的第一组井中的每个孔连接并且仅与所述第一组井中的每个井相连通的排气口。 该方法还包括将气体引入入口并从所选择的第一组孔中除去溶剂蒸气。
    • 74. 发明申请
    • Method of Detecting and Quantifying Analytes of Interest in a Liquid and Implementation Device
    • 检测和定量液体和实施装置中感兴趣的分析物的方法
    • US20120070911A1
    • 2012-03-22
    • US13258580
    • 2010-03-29
    • Jean-Pierre PeyradeDavid PeyradeChristophe VieuLaurent Malaquin
    • Jean-Pierre PeyradeDavid PeyradeChristophe VieuLaurent Malaquin
    • G01N33/53G01N21/78G01N21/64B82Y15/00
    • G01N33/54366B01L3/502761B01L2200/0678B01L2300/1861B01L2400/0466G01N35/00029G01N2001/4027G01N2035/00158
    • The invention provides a method of detecting and quantifying analytes present in a solution, which is portable, rapid, inexpensive, selective and ultra-sensitive. For this purpose, the subject of the invention is a method of detecting and quantifying analytes of interest (2) in a specimen (1) of liquid obtained from a mother liquor, the liquid being able to evaporate in an atmosphere (Atm) under defined evaporation conditions, the method comprising the following steps: b) the specimen (1) is deposited on a substrate (10) having a microstructured or nanostructured surface (20) defining analyte capture probes, in order for the liquid specimen to at least partially cover the structured surface of the substrate; c) the specimen undergoes controlled evaporation (5) in the vicinity (VT) of a liquid/substrate/atmosphere triple line (T), in such a way that this triple line moves, at a controlled rate, over the structured surface of the substrate as the liquid evaporates into the atmosphere, and so that the target analytes are captured, by convective assembly and directed capillary action, by the probes; and d) the structured surface of the substrate obtained after step c) is analysed.
    • 本发明提供了一种检测和定量解决方案中存在的分析物的方法,其是便携式的,快速的,廉价的,选​​择性的和超灵敏的。 为此目的,本发明的主题是检测和定量从母液获得的液体样品(1)中感兴趣的分析物(2)的方法,该液体可在规定的气氛(Atm)中蒸发 蒸发条件,该方法包括以下步骤:b)将样品(1)沉积在具有限定分析物捕获探针的微结构或纳米结构化表面(20)的基底(10)上,以使液体样品至少部分覆盖 基板的结构化表面; c)样品在液体/衬底/气氛三线(T)的附近(VT)处经受受控蒸发(5),使得该三线以受控的速率移动超过结构化表面 底物作为液体蒸发到大气中,并且通过探针通过对流装配和定向毛细管作用捕获目标分析物; 和d)分析在步骤c)之后获得的基材的结构化表面。
    • 75. 发明申请
    • Method and Sample Holding Assembly for Use in Sample Preparation
    • 用于样品制备的方法和样品保持组件
    • US20120011945A1
    • 2012-01-19
    • US13254465
    • 2010-03-29
    • Roger Lee-Smith
    • Roger Lee-Smith
    • B01L3/00
    • B01L3/508B01L2200/026B01L2200/04B01L2200/0678G01N2001/4027
    • A method and sample holding assembly are described for use in the preparation of samples for analysis. In known techniques, following concentration of a sample using an evaporator, the concentrated solution is manually transferred to a smaller vial compatible with analysis apparatus using a pipette. This leads to loss of the sample and risks cross-contamination. Using the present method, a sample is concentrated directly into the vial. The method comprises the steps of collecting a sample in a concentration tube which is open at one end and closed at the other, the closed end being selectively openable. A vial is coupled to the open end, the tube is inverted, the closed end is opened, and then solvent is evaporated from the sample via the opened end until the concentrated sample is confined to the vial. A sample holding assembly for use in the present method is also described. It comprises a concentration tube, and an adaptor arrangement for coupling a vial to the open end of the tube and defining a fluid path between the tube and the vial.
    • 描述了用于制备用于分析的样品的方法和样品保持组件。 在已知的技术中,使用蒸发器浓缩样品后,将浓缩的溶液用移液管手动转移到与分析装置相容的较小的小瓶中。 这导致样品的损失,并有交叉污染的风险。 使用本方法,将样品直接浓缩到小瓶中。 该方法包括以下步骤:在一端开放并在另一端闭合的浓缩管中收集样品,封闭端可选择性地打开。 将小瓶联接到开口端,将管倒置,封闭端打开,然后通过开口端从样品中蒸发溶剂,直到浓缩的样品被限制在小瓶中。 还描述了用于本方法的样品保持组件。 它包括浓缩管和用于将小瓶连接到管的开口端并在管和小瓶之间限定流体路径的适配器装置。