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Nanoelectrospray Emitter Arrays Providing Interemitter Electric Field Uniformity

机译:纳米电喷雾发射器阵列提供发射器间电场均匀性

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Arrays of electrospray ionization (ESI) emitters have been reported previously as a means of enhancing ionization efficiency or signal intensity. A key challenge when working with multiple, closely spaced ESI emitters is overcoming the deleterious effects caused by electrical interference among neighboring emitters. Individual emitters can experience different electric fields depending on their relative position in the array, such that it becomes difficult to operate all of the emitters optimally for a given applied potential. In this work, we have developed multi-nanoESI emitters arranged with a circular pattern, which enable the constituent emitters to experience a uniform electric field. The performance of the circular emitter array was compared to a single emitter and to a previously developed linear emitter array, which verified that improved electric field uniformity was achieved with the circular arrangement. The circular arrays were also interfaced with a mass spectrometer via a matching multicapillary inlet, and the results were compared with those obtained using a single emitter. By minimizing interemitter electric field inhomogeneities, much larger arrays having closer emitter spacing should be feasible.
机译:先前已经报道了电喷雾电离(ESI)发射器的阵列作为增强电离效率或信号强度的手段。与多个紧密排列的ESI发射器一起工作时的主要挑战是克服相邻发射器之间的电干扰所造成的有害影响。各个发射器会根据它们在阵列中的相对位置而经历不同的电场,因此,对于给定的施加电势,优化所有发射器变得困难。在这项工作中,我们开发了以圆形图案排列的多纳米ESI发射器,使组成的发射器能够经受均匀的电场。将圆形发射器阵列的性能与单个发射器和先前开发的线性发射器阵列进行了比较,这证实了圆形布置可以提高电场均匀性。圆形阵列还通过匹配的多毛细管入口与质谱仪连接,并将结果与​​使用单发射器获得的结果进行比较。通过最小化发射极间电场的不均匀性,具有更近的发射极间距的更大的阵列应该是可行的。

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