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Bipolar ion detector based on sequential conversion reactions

机译:基于顺序转换反应的双极性离子检测器

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This work demonstrates the feasibility of a novel scintillation detector with greater detection efficiency than that of chevron-type microchannel plate (MCP) detectors. The detection mechanism involves sequential conversion reactions induced by ion-surface impacts. Identical detection conditions can be utilized to monitor both positive and negative ions in mass spectrometers. The proposed detector comprises an ion beam guiding device, a negatively biased washer-shaped conversion dynode, and an aluminum-coated scintillation detector. The beam guide changes the electric field around the washer-shaped conversion dynode, and it allows the primary and secondary ions to propagate toward the scintillation phosphor and the conversion dynode, respectively. The detection is achieved by the detection of electron-induced luminescence on a phosphor. The amplification efficiency of this bipolar ion detector increases as the conversion dynode voltage increases. For ions with a mass-to-charge ratio of up to 90 000, the sensitivity of the BID is 1.4-14.4 times that of the MCP. Further improvement of the sensitivity can be achieved by increasing the conversion dynode voltage or the ion acceleration voltage. Results of this study demonstrate that this detector is a promising alternative for efficient ion detection.
机译:这项工作证明了一种新颖的闪烁检测器的可行性,该检测器的检测效率高于V形V型微通道板(MCP)检测器的检测效率。检测机制涉及由离子表面撞击引起的顺序转化反应。可以使用相同的检测条件来监测质谱仪中的正离子和负离子。所提出的检测器包括离子束引导装置,负偏置的垫圈形转换打拿极和铝涂层闪烁检测器。光束导向器改变了垫圈形转换倍增电极周围的电场,并允许初级和次级离子分别向闪烁荧光粉和转换倍增电极传播。该检测是通过检测荧光粉上电子诱导的发光来实现的。该双极离子检测器的放大效率随着转换倍增极电压的增加而增加。对于质荷比最高为90 000的离子,BID的灵敏度是MCP的1.4-14.4倍。通过增加转换倍增极电压或离子加速电压,可以进一步提高灵敏度。这项研究的结果表明,该检测器是有效离子检测的有希望的替代方法。

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