Abstract:
The present invention relates to a sensor kit (1) for detecting an analyte. It comprises x indicator substances (S 1 , S 2 ... S x ) having a specific spectral response to the analyte, whereby 1 1 , r 2 ...r n ) arranged adjacent to a second side (4). Each indicator substance region is arranged for carrying one indicator substance and the substrate comprises at least one indicator substance region for each indicator substance. A filter element (5) is integrated with the substrate, which comprises at least one of each of n different filters (f 1 , f 2 - - -f n ), whereby 2
Abstract translation:本发明涉及用于检测分析物的传感器套件(1)。 它包含对分析物具有特定光谱响应的x个指示物质(S 1 sub>,S 2 ... s x sub>), X <200。 该传感器套件还包括将在第一侧(3)上照射并且包括至少一个指示物质区域(r 1,r 2 sub>)的衬底(2) > ... r n SUB>)布置为与第二侧(4)相邻。 每个指示物质区域被设置为携带一种指示物质,并且该基底包括用于每种指示物质的至少一个指示物质区域。 滤波器元件(5)与基底集成在一起,该基底包括n个不同滤波器中的每一个中的至少一个(f 1 sub>,f 2 sub> - > -f n SUB>),其中2
Abstract:
This invention relates to a practical low cost method and devices which exploits the benefits of several photo-assisted analytical techniques involving controlled light sources. The method comprise the use of a program controlled display (like computer, mobile telephones to TV screens) used as a light source for illuminating a detector specially suited to capture the light interaction with a test environment, allowing to generate distinctive spectra and chemical or biochemical images of the environment. Additionally, the information can be acquired in situ but immediately analyzed on line via internet.
Abstract:
The present invention relates to a method for preparing a conducting polymer. Characteristic of the invention is that a substrate 6 is impinged, in a controlled atmosphere, with at least two gas flows. One of these gas flows contains polymerizable molecules which are a conjugated polymer after polymerization, for example molecules having triple bonds such as acetylene or aromatic molecules, for example benzene or 5-membered heterocycles, for example pyrrole. The other gas flow contains oxidizing molecules, for example FeCl3 and H202. The temperature of the substrate 6 is maintained at a value which is sufficiently low in order for the gas molecules, as a result of a long dwell time on the surface of the substrate 6, and sufficiently high in order, as a result of the said molecules having increased surface mobility, to ensure a high probability of interaction between the molecules of the gas flows.