Muna Grace W, Swope Vernon M, Swain Greg M, Porter Marc D
Departments of Chemistry, Chemical Engineering and Bioengineering, University of Utah, 383 Colorow Road, Salt Lake City, UT 84108, USA.
J Chromatogr A. 2008 Nov 14;1210(2):154-9. doi: 10.1016/j.chroma.2008.09.069. Epub 2008 Sep 25.
This paper reports on preliminary tests of the performance of boron-doped diamond powder (BDDP) as a stationary phase in electrochemically modulated liquid chromatography (EMLC). EMLC manipulates retention through changes in the potential applied (E(appl)) to a conductive packing. Porous graphitic carbon (PGC) has routinely been utilized as a material in EMLC separations. Herein the utility of BDDP as a stationary phase in EMLC was investigated and its stability, both compositionally and microstructurally, relative to PGC was compared. The results show that BDDP is stable over a wide range of E(appl) values (i.e., -1.2 to +1.2V vs. Ag/AgCl, sat'd NaCl). The data also reveal that electrostatics play a key role in the adsorption of the aromatic sulfonates on the BDDP stationary phase, and that these analytes are more weakly retained in comparison to the PGC support. The potential for this methodology to provide a means to advance the understanding of molecular adsorption and retention mechanisms on carbonaceous materials is briefly discussed.
本文报道了硼掺杂金刚石粉末(BDDP)作为电化学调制液相色谱(EMLC)固定相的性能初步测试。EMLC通过改变施加到导电填料上的电势(E(appl))来控制保留。多孔石墨化碳(PGC)通常被用作EMLC分离的材料。本文研究了BDDP作为EMLC固定相的实用性,并比较了其相对于PGC在组成和微观结构上的稳定性。结果表明,BDDP在较宽的E(appl)值范围内(即相对于饱和NaCl溶液中的Ag/AgCl为-1.2至+1.2V)是稳定的。数据还表明,静电作用在芳香族磺酸盐在BDDP固定相上的吸附中起关键作用,并且与PGC载体相比,这些分析物的保留较弱。简要讨论了该方法为推进对含碳材料上分子吸附和保留机制的理解提供手段的潜力。