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Fine chemical manipulations of microscopic liquid samples. 2. Consuming and nonconsuming schemes

机译:微观液体样品的精细化学处理。 2.消费和非消费计划

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Microscopic liquid particles can be manipulated chemically using a suitable diffusional microburet (DMB), whose tiny tip plugged with a diffusion membrane acts as a well-defined diffusional transfer channel. In part 1 of this work (Gratzl et al, Anal. Chem, 1999, 71, 2751-2756), we discussed the simplest DMB-based operation: addition, i.e., loading a droplet with a chemical that accumulates there without any chemical reaction occurring. Since in this process no consumption of the delivered molecules in the target droplet takes place, addition is a nonconsuming scheme. In this work, another type of nonconsuming scheme is explored, which is the subtraction of a substance from droplets via a DMB. This process has no analogy among macroscopic chemical operations, Both addition and subtraction occur according to an exponential asymptotic process when diffusion is at quasisteady state inside the DMB tip. These nonconsuming operations were characterized using the transport of microscopic quantities of Lucifer Yellow CH, a fluorescent dye, under a fluorescent microscope. The third basic type of chemical manipulation is when the substance delivered by a DMB is consumed in the target droplet instantaneously by a fast chemical reaction, This consuming scheme was studied by delivering EDTA into droplets containing Pb2+ ions and a color indicator. These microscopic titrations were monitored using gray scale transmittance images of the droplets as recorded versus time. A unified theory of the three basic DMB operations is also presented. [References: 13]
机译:可以使用合适的扩散微滴管(DMB)对微观的液体颗粒进行化学处理,该微滴管的细小尖端塞有扩散膜,可以作为明确定义的扩散传输通道。在这项工作的第1部分(Gratzl等人,Anal。Chem,1999,71,2751-2756)中,我们讨论了最简单的基于DMB的操作:加法,即向液滴中加载一种在该液滴中累积而没有任何化学反应的化学品发生。由于在此过程中目标液滴中没有释放分子的消耗,因此添加是非消耗方案。在这项工作中,探索了另一种非消耗性方案,即通过DMB从液滴中减去物质。此过程与宏观化学操作没有类似之处,当扩散在DMB尖端内部处于准稳态时,加法和减法都会根据指数渐近过程进行。通过在荧光显微镜下输送微量的荧光染料路西法黄CH,来表征这些非消耗性操作。化学操作的第三种基本类型是当DMB传递的物质通过快速化学反应立即在目标液滴中被消耗时,通过将EDTA传递到包含Pb2 +离子和颜色指示剂的液滴中来研究这种消耗方案。使用所记录的液滴相对于时间的灰度透射图像监控这些微观滴定。还介绍了三个基本DMB操作的统一理论。 [参考:13]

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