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Latent Fingerprint Visualization using a Scanning Kelvin Probe in Conjunction with Vacuum Metal Deposition

机译:使用扫描开尔文探针与真空金属沉积相结合的潜在指纹可视化

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摘要

The application of vacuum metal deposition before scanning Kelvin probe visualization of fingerprints is investigated. The potential contrast between fingerprint ridges and furrows is maximized by the use of silver deposition for non-noble metals and gold-zinc deposition for noble metals. The higher susceptibility of eccrine fingerprints to vacuum metal overdeposition is confirmed. Additionally, fingerprints are best developed individually and by building the metal deposition slowly to protect against overdevelopment and variation in the rate of metal condensation. The progress of the metal deposition can be monitored using the scanning Kelvin probe by reference to the change in potential and continuity of the new potential on the surface. The use of acetic acid solution for the recovery of overVMD-developed samples is shown not to be useful. Applying the metal deposition has the additional prospect of increasing surface conductivity and homogeneity and both can aid fingerprint visualization using the scanning Kelvin probe.
机译:研究了扫描开尔文探针可视化指纹之前真空金属沉积的应用。通过将银沉积用于非贵金属,将金锌沉积用于贵金属,可以最大程度地提高指纹纹脊和沟之间的潜在对比度。证实了内分泌指纹对真空金属过度沉积的敏感性更高。此外,最好单独显影指纹并通过缓慢建立金属沉积物来防止过度显影和金属冷凝速率变化。可以使用扫描开尔文探针通过参考电势的变化和表面上新电势的连续性来监视金属沉积的进程。乙酸溶液用于回收过度VMD开发的样品的方法显示无用。应用金属沉积具有增加表面电导率和均匀性的额外前景,并且两者都可以帮助使用扫描开尔文探针进行指纹可视化。

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