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A Microstructured Fiber with Defined Borosilicate Regions to Produce a Radial Micronozzle Array for Nanoelectrospray Ionization

机译:一种微结构化纤维,具有限定的硼硅酸盐区,以产生用于纳米电池电离的径向微嘴阵列

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This work highlights the possibility of using microstructured fibres with predefined doped regions to produce functional microstructures at a fibre facet with differential chemical etching. A specially designed silica microstructured fibre (MSF) that possesses specific boron-doped silica regions was fabricated for the purpose of generating a radial micronozzle array. The MSF was drawn from a preform comprising pure silica capillaries surrounded by boron-doped silica rods. Different etching rates of the boron-doped and silica regions at the fiber facet produces raised nozzles where the silica capillaries were placed. Fabrication parameters were explored in relation to the fidelity and protrusion length of the nozzle. Using etching alone, the nozzle protrusion length was limited, and the inner diameter of the channels in the array is expanded. However with the addition of a protective water counter flow, nozzle protrusion is increased to 60?μm with a limited increase in hole diameter. The radial micronozzle array generated nine individual electrosprays which were characterized using spray current measurements and related to theoretical prediction. Signal enhancement for the higher charge state ions for two peptides showed a substantial signal enhancement compared to conventional emitter technology.
机译:该工作突出了使用具有预定掺杂区域的微结构纤维的可能性,以产生具有差分化学蚀刻的纤维刻面的功能微结构。为了产生径向微嘴阵列,制造具有特定硼掺杂二氧化硅区域的特殊设计的二氧化硅微结构纤维(MSF)。 MSF由包含由掺杂二氧化硅棒包围的纯二氧化硅毛细管的预制件。纤维刻面的硼掺杂和二氧化硅区域的不同蚀刻速率产生凸起的喷嘴,其中置于二氧化硅毛细血管。探索了与喷嘴的保真度和突出长度相关的制造参数。单独使用蚀刻,喷嘴突起长度受到限制,并且阵列中的通道的内径被扩展。然而,随着保护性水计数器流动,喷嘴突起增加到60Ωμm,孔径有限地增加。径向微嘴阵列产生九个单独的电镀膜,其特征在于使用喷射电流测量和与理论预测相关。与传统发射极技术相比,两种肽的较高电荷状态离子的信号增强显示了大量信号增强。

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