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Spectroscopically Encoded Resins for High Throughput Imaging Time-of-Flight Secondary Ion Mass Spectrometry

机译:用于高通量成像飞行时间二次离子质谱的光谱编码树脂

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Spectroscopic barcoding was recently introduced as a new pre-encoding strategy wherein the resin beads are not just carriers for solid phase synthesis,but are,in addition,the repository of the synthetic scheme to which they were subjected.To expand the repertoire of spectroscopically barcoded resins(BCRs),here we introduce a new family of halogenated polystyrene-based polymers designed for high-throughput combinatorial analysis using not only infrared and Raman spectroscopy but also imaging time-of-flight secondary ion mass spectrometry(ToF-SIMS).In particular,we have established that(a)the halogen content of these new resins can be used as an encoding element in quantitative imaging ToF-SIMS and(b)the number of styrene monomers used to generate unique vibrational fingerprints can be significantly reduced by using monomers in different molar ratios.The combination of quantitative imaging ToF-SIMS and vibrational spectroscopy is anticipated to dramatically increase the repertoire of possible BCRs from a few hundreds to several thousands.
机译:光谱条形码技术最近被引入作为一种新的预编码策略,其中树脂珠不仅是固相合成的载体,而且是它们所经受的合成方案的存储库。为了扩大光谱条形码的种类树脂(BCR),我们在此介绍了一个新的卤化聚苯乙烯基聚合物系列,该系列不仅用于红外和拉曼光谱,还用于飞行时间二次离子质谱(ToF-SIMS),用于高通量组合分析。特别是,我们已经确定,(a)这些新树脂的卤素含量可以用作定量成像ToF-SIMS的编码元素,并且(b)通过使用以下方法可以显着减少用于产生独特振动指纹的苯乙烯单体的数量定量成像ToF-SIMS和振动光谱法的结合有望显着提高pos的组成从数百到数千的有效BCR。

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