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Controlled radical polymerization and in-depth mass-spectrometric characterization of poly(ionic liquid)s and their photopatterning on surfaces

机译:聚离子液体的受控自由基聚合和深度质谱表征及其在表面的光图案化

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摘要

The preparation and characterization of poly(ionic liquid)s (PILs) bearing a polystyrene backbone via reversible addition fragmentation chain transfer (RAFT) polymerization and their photolithographic patterning on silicon wafers is reported. The controlled radical polymerization of the styrenic ionic liquid (IL) monomers ([BVBIM]X, X = Cl- or Tf2N-) by RAFT polymerization is investigated in detail. We provide a general synthetic tool to access this class of PILs with controlled molecular weight and relatively narrow molecular weight distribution (2000 g mol-1 ≤ Mn ≤ 10-000 g mol-1 with dispersities between 1.4 and 1.3 for p([BVBIM]Cl); 2100 g mol-1 ≤ MP ≤ 14-000 g mol-1 for p([BVBIM]Tf2N)). More importantly, we provide an in-depth characterization of the PILs and demonstrate a detailed mass spectrometric analysis via matrix-assisted laser desorption ionization (MALDI) as well as-for the first time for PILs-electrospray ionization mass spectrometry (ESI-MS). Importantly, p([BVBIM]Cl) and p([DMVBIM]Tf2N) were photochemically patterned on silicon wafers. Therefore, a RAFT agent carrying a photoactive group based on ortho-quinodimethane chemistry-more precisely photoenol chemistry-was photochemically linked for subsequent controlled radical polymerization of [BVBIM]Cl and [DMVBIM]Tf2N. The successful spatially-resolved photografting is evidenced by surface-sensitive characterization methods such as X-ray photoelectron spectroscopy (XPS) and time-of-flight secondary ion mass spectrometry (ToF-SIMS). The presented method allows for the functionalization of diverse surfaces with poly(ionic liquid)s. © The Royal Society of Chemistry 2016.
机译:报道了通过可逆加成断裂链转移(RAFT)聚合及其在硅片上的光刻构图,对带有聚苯乙烯骨架的聚离子液体(PIL)进行制备和表征。详细研究了通过RAFT聚合对苯乙烯离子液体(IL)单体([BVBIM] X,X = Cl-或Tf2N-)进行的受控自由基聚合。我们提供了一种通用的合成工具来访问此类具有受控分子量和相对窄分子量分布的PIL(2000 g mol-1≤Mn≤10-000 g mol-1,p([BVBIM]的分散度在1.4和1.3之间Cl);对于p([BVBIM] Tf2N))为2100 g mol-1≤MP≤14-000 g mol-1。更重要的是,我们提供了PIL的深入表征,并通过基质辅助激光解吸电离(MALDI)演示了详细的质谱分析,以及首次用于PIL的电喷雾电离质谱(ESI-MS) 。重要的是,在硅晶片上对p([BVBIM] Cl)和p([DMVBIM] Tf2N)进行了光化学构图。因此,将带有基于邻喹啉二甲烷化学-更精确地为光烯醇化学的光敏基团的RAFT剂光化学连接以随后控制[BVBIM] Cl和[DMVBIM] Tf2N的自由基聚合。表面敏感的表征方法,例如X射线光电子能谱(XPS)和飞行时间二次离子质谱(ToF-SIMS),证明了成功的空间分辨光接枝。提出的方法允许用聚(离子液体)功能化各种表面。 ©皇家化学学会2016。

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