Institut de Police Scientifique, School of Criminal Sciences, Building Batochime/University of Lausanne, Lausanne, Switzerland.
Forensic Sci Int. 2012 Jun 10;219(1-3):39-49. doi: 10.1016/j.forsciint.2011.11.024. Epub 2012 Jan 9.
This work is part of a continuing goal to improve the multimetal deposition technique (MMD), as well as the single-metal deposition (SMD), to make them more robust, more user-friendly, and less labour-intensive. Indeed, two major limitations of the MMD/SMD were identified: (1) the synthesis of colloidal gold, which is quite labour-intensive, and (2) the sharp decrease in efficiency observed when the pH of the working solution is increased above pH 3. About the synthesis protocol, it has been simplified so that there is no more need to monitor the temperature during the synthesis. The efficiency has also been improved by adding aspartic acid, conjointly with sodium citrate, during the synthesis of colloidal gold. This extends the range of pH for which it is possible to detect fingermarks in the frame of the MMD/SMD. The operational range is now extended from 2 to 6.7, compared to 2-3 for the previous formulations. The increased robustness of the working solution may improve the ability of the technique to process substrates that tend to increase the pH of the solution after their immersion.
这项工作是不断改进多金属沉积技术(MMD)和单金属沉积(SMD)的目标的一部分,以使它们更强大、更用户友好、劳动强度更低。事实上,已经确定了 MMD/SMD 的两个主要限制:(1) 胶体金的合成,这是相当劳动密集型的,(2) 当工作溶液的 pH 值增加到 pH 3 以上时,效率明显下降。关于合成方案,已经进行了简化,因此在合成过程中不再需要监测温度。通过在胶体金的合成过程中添加天冬氨酸和柠檬酸钠,也提高了效率。这扩展了可以在 MMD/SMD 范围内检测指纹的 pH 值范围。与之前的配方相比,操作范围现在从 2 扩展到 6.7。工作溶液的增强稳健性可能会提高该技术处理那些在浸入后倾向于增加溶液 pH 值的基底的能力。