Department of Chemistry, Faculty of Science, Universiti Teknologi Malaysia, 81310, Skudai, Johor, Malaysia.
Enzyme Technology and Green Synthesis Research Group, Faculty of Science, Universiti Teknologi Malaysia, 81310, Skudai, Johor, Malaysia.
Sci Rep. 2022 Aug 30;12(1):14780. doi: 10.1038/s41598-022-18929-8.
The discovery of forensic evidence (e.g. weapons) during forensic underwater investigations has seen an increasing trend. To date, small particle reagent (SPR) has been one of the routinely used methods for visualising fingerprints on wet, non-porous substrates. However, the long term use of SPR is detrimental to humans and environment due to the use of toxic chemicals. Although previously we have successfully developed and optimised a greener nanobio-based reagent (NBR), its suitable practical use in a more realistic scene (e.g. outdoor pond) was not evaluated. Therefore, this present research is aimed at (1) investigating the performance of NBR against the benchmark SPR in visualising fingerprints immersed in a natural outdoor pond and (2) evaluating the greenness of NBR against the analytical Eco-Scale. Results showed that the performance of the optimised NBR was mostly comparable (University of Canberra (UC) comparative scale: 0) with SPR at visualising fingerprints on three different non-porous substrates immersed in a natural outdoor pond. Observably, the NBR had higher preference towards aged fingerprints (up to 4 weeks of immersion). In addition, its greenness assessment revealed 76 points, indicating 'excellent green analysis'. The findings gathered here further supported the practical use of the NBR in forensic investigations.
在法医水下调查中发现的法医证据(例如武器)呈上升趋势。迄今为止,小颗粒试剂 (SPR) 一直是一种常规方法,用于在潮湿、无孔基质上可视化指纹。然而,由于使用有毒化学品,SPR 的长期使用对人类和环境有害。尽管我们之前已经成功开发和优化了一种更环保的基于纳米的生物试剂 (NBR),但尚未评估其在更实际场景(例如户外池塘)中的适当实际用途。因此,本研究旨在:(1) 研究 NBR 在可视化浸入天然户外池塘的指纹方面与基准 SPR 的性能;(2) 用分析生态标度 (Eco-Scale) 评估 NBR 的绿色度。结果表明,优化后的 NBR 在可视化浸入天然户外池塘的三种不同无孔基质上的指纹方面,其性能与 SPR 大多相当(堪培拉大学比较尺度:0)。可以明显看出,NBR 对老化指纹(长达 4 周的浸泡)具有更高的偏好。此外,其绿色度评估显示 76 分,表明“优秀的绿色分析”。这里收集的研究结果进一步支持了 NBR 在法医学调查中的实际应用。