Foster Samuel W, Xie Xiaofeng, Hellmig Jacob M, Moura-Letts Gustavo, West W Raymond, Lee Milton L, Grinias James P
Department of Chemistry & Biochemistry, Rowan University, Glassboro, NJ 08028.
Axcend LLC, Provo, UT 84604.
Sep Sci Plus. 2022 Jun;5(6):213-219. doi: 10.1002/sscp.202200012. Epub 2022 Mar 31.
A wide variety of analytical techniques have been employed for monitoring chemical reactions, with online instrumentation providing additional benefits compared to offline analysis. A challenge in the past for online monitoring has been placement of the monitoring instrumentation as close as possible to the reaction vessel to maximize sampling temporal resolution and preserve sample composition integrity. Furthermore, the ability to sample very small volumes from bench-scale reactions allows the use of small reaction vessels and conservation of expensive reagents. In this study, a compact capillary LC instrument was used for online monitoring of as small as 1 mL total volume of a chemical reaction mixture, with automated sampling of nL-scale volumes directly from the reaction vessel used for analysis. Analyses to demonstrate short term (2 h) and long term ( 50 h) reactions were conducted using tandem on-capillary ultraviolet absorbance followed by in-line MS detection or ultraviolet absorbance detection alone, respectively. For both short term and long term reactions (10 and 250 injections, respectively), sampling approaches using syringe pumps minimized the overall sample loss to ~0.2% of the total reaction volume.
已采用各种各样的分析技术来监测化学反应,与离线分析相比,在线仪器具有更多优势。过去在线监测面临的一个挑战是将监测仪器尽可能靠近反应容器放置,以最大化采样时间分辨率并保持样品成分完整性。此外,能够从实验室规模的反应中采集非常少量的样品,使得可以使用小型反应容器并节省昂贵的试剂。在本研究中,一台紧凑型毛细管液相色谱仪用于在线监测总体积低至1 mL的化学反应混合物,直接从用于分析的反应容器中自动采集纳升级体积的样品。分别使用串联毛细管紫外吸光度检测随后在线质谱检测或仅使用紫外吸光度检测,进行了证明短期(约2小时)和长期(约50小时)反应的分析。对于短期和长期反应(分别为10次和250次进样),使用注射泵的采样方法将总体样品损失最小化至总反应体积的约0.2%。