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High-Power 365 nm UV LED Mercury Arc Lamp Replacementfor Photochemistry and Chemical Photolithography

机译:大功率365 nm UV LED汞弧灯更换用于光化学和化学光刻

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摘要

Ultraviolet light emitting diodes (UV LEDs) have become widespread in chemical research as highly efficient light sources for photochemistry and photopolymerization. However, in more complex experimental setups requiring highly concentrated light and highly spatially resolved patterning of the light, high-pressure mercury arc lamps are still widely used because they emit intense UV light from a compact arc volume that can be efficiently coupled into optical systems. Advances in the deposition and p-type doping of gallium nitride have recently permitted the manufacture of UV LEDs capable of replacing mercury arc lamps also in these applications. These UV LEDs exceed the spectral radiance of mercury lamps even at the intense I-line at 365 nm. Here we present the successful exchange of a high-pressure mercury arc lamp for a new generation UV LED as a light source in photolithographic chemistry and its use in the fabrication of high-density DNA microarrays. We show that the improved light radiance and efficiency of these LEDs offer substantial practical, economic and ecologicaladvantages, including faster synthesis, lower hardware costs, verylong lifetime, an >85-fold reduction in electricity consumptionandthe elimination of mercury waste and contamination.
机译:紫外线发光二极管(UV LED)作为用于光化学和光聚合的高效光源已在化学研究中广泛应用。然而,在需要高度集中的光和高度空间分辨的光图案的更复杂的实验装置中,高压汞弧灯仍然被广泛使用,因为它们从紧凑的电弧体积中发出强烈的紫外线,可以有效地耦合到光学系统中。氮化镓的沉积和p型掺杂方面的进展最近允许在这些应用中制造能够代替汞弧灯的UV LED。这些紫外线LED即使在365 nm的强I线下也超过了汞灯的光谱辐射。在这里,我们介绍了高压汞弧灯已成功替换为新一代UV LED,并将其用作光刻化学中的光源及其在制造高密度DNA微阵列中的用途。我们表明,这些LED的改进的光辐射率和效率提供了切实可行的,经济的和生态的优势,包括更快的综合,更低的硬件成本,非常使用寿命长,用电量减少超过85倍和消除汞浪费和污染。

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