首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Deposition, patterning, and utility of conductive materials for the rapid prototyping of chemical and bioanalytical devices
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Deposition, patterning, and utility of conductive materials for the rapid prototyping of chemical and bioanalytical devices

机译:用于化学和生物分析设备的快速原型制作的导电材料的沉积,构图和实用性

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摘要

Rapid prototyping is a critical step in the product development cycle of miniaturized chemical and bioanalytical devices, often categorized as lab-on-a-chip devices, biosensors, and micro-total analysis systems. While high throughput manufacturing methods are often preferred for large-volume production, rapid prototyping is necessary for demonstrating and predicting the performance of a device and performing field testing and validation before translating a product from research and development to large volume production. Choosing a specific rapid prototyping method involves considering device design requirements in terms of minimum feature sizes, mechanical stability, thermal and chemical resistance, and optical and electrical properties. A rapid prototyping method is then selected by making engineering trade-off decisions between the suitability of the method in meeting the design specifications and manufacturing metrics such as speed, cost, precision, and potential for scale up. In this review article, we review four categories of rapid prototyping methods that are applicable to developing miniaturized bioanalytical devices, single step, mask and deposit, mask and etch, and mask-free assembly, and we will focus on the trade-offs that need to be made when selecting a particular rapid prototyping method. The focus of the review article will be on the development of systems having a specific arrangement of conductive or semiconductive materials.
机译:快速原型设计是微型化学和生物分析设备产品开发周期中的关键步骤,通常被归类为芯片实验室设备,生物传感器和微总分析系统。尽管高产量的制造方法通常是大批量生产的首选,但在将产品从研发转变为大批量生产之前,为了演示和预测设备的性能以及执行现场测试和验证,必须进行快速原型制作。选择一种特定的快速原型制作方法涉及在最小特征尺寸,机械稳定性,耐热和耐化学性以及光学和电气特性方面考虑器件设计要求。然后,通过在满足设计规范的方法的适用性与制造指标(例如速度,成本,精度和扩大规模的可能性)之间做出工程折衷决定,从而选择一种快速原型方法。在这篇综述文章中,我们回顾了适用于开发微型生物分析设备的四类快速原型方法,即单步,掩模和沉积,掩模和蚀刻以及无掩模组装,并且我们将重点关注需要权衡的问题选择特定的快速原型制作方法时要进行的操作。这篇评论文章的重点将放在具有特定导电或半导电材料排列的系统的开发上。

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