Chamas Ali, Qi Long, Mehta Hardeep S, Sears Jesse A, Scott Susannah L, Walter Eric D, Hoyt David W
Department of Chemistry & Biochemistry, University of California, Santa Barbara, CA 93106, United States.
Ames Laboratory, U.S. Department of Energy, Ames, IA 50011, United States.
Magn Reson Imaging. 2019 Feb;56:37-44. doi: 10.1016/j.mri.2018.09.026. Epub 2018 Oct 25.
A new MAS-NMR rotor (the WHiMS rotor) has been developed which can reach pressures of 400 bar at 20 °C or 225 bar at 250 °C. These rotors are ideal for mixed phase systems such as a reaction using a solid catalyst with a liquid/supercritical solvent topped with high pressure gas in the head space. After solid and liquid portions of the sample are loaded, the rotor is capped with an o-ring equipped polymer bushing that snaps into a mating groove in the rotor. The bushings incorporate a check valve into the sealing mechanism which allows for pressurization without mechanical manipulation - they will allow gas to flow in but not out. This WHiMS rotor design has enabled experiments on a wide variety of biotic and abiotic mixed-phase systems. Geochemical systems have also been studied, for example, adsorption and confinement studies of supercritical methane/CO in clays and other minerals which display pressure dependent C chemical shifts. Example data from other mixed-phase chemical and microbial systems are reported. These include monitoring metabolite conversion of extremophilic bacteria found in subsurface systems at elevated pressures and real-time operando reactions in catalysis systems - with liquid-quality resolution for H and C NMR spectra.
一种新型的MAS-NMR转子(WHiMS转子)已被开发出来,它在20°C时能达到400巴的压力,在250°C时能达到225巴的压力。这些转子对于混合相系统非常理想,例如使用固体催化剂与液体/超临界溶剂,并在顶部空间充有高压气体的反应。在装入样品的固体和液体部分后,转子用一个装有O形环的聚合物衬套密封,该衬套卡入转子的匹配凹槽中。衬套在密封机构中集成了一个止回阀,允许在无需机械操作的情况下进行加压——它们允许气体流入但不流出。这种WHiMS转子设计使得能够对各种生物和非生物混合相系统进行实验。地球化学系统也得到了研究,例如,对粘土和其他矿物中显示压力依赖性碳化学位移的超临界甲烷/一氧化碳的吸附和限制研究。报告了来自其他混合相化学和微生物系统的示例数据。这些包括监测在高压下地下系统中发现的极端嗜热细菌的代谢物转化,以及催化系统中的实时原位反应——具有氢和碳核磁共振光谱的液体质量分辨率。