scholarly journals Evaluation of Silica Hydride Based Amide Stationary Phase for High Performance Liquid Chromatography and Aqueous Normal Phase Separations

2020 ◽  
Author(s):  
Emma Tardiff
Separations ◽  
2019 ◽  
Vol 6 (2) ◽  
pp. 27 ◽  
Author(s):  
Maria Matyska ◽  
Joseph Pesek

The development of a stationary phase material for high-performance liquid chromatography based on a surface of silica hydride as opposed to silanols on ordinary silica is discussed including synthetic approaches, characterization, and applications. There are several synthetic approaches available to create a silica hydride surface. Modification of the Si–H moiety on the silica surface can be accomplished through the use of a hydrosilation reaction. Both the intermediate silica hydride and the material modified with an organic moiety can be characterized by a number of spectroscopic as well as a variety of other methods. Further insights into the retention mechanism are provided through chromatographic measurements. The ultimate utility of any chromatographic stationary phase material is determined by its success in solving challenging analytical problems. A broad range of applications is reviewed to illustrate the versatility and usefulness of silica hydride-based stationary phases.


Author(s):  
Maria Matyska ◽  
Joseph Pesek

The development of a stationary phase material for high performance liquid chromatography based on a surface of silica hydride as opposed to silanols on ordinary silica is discussed including synthetic approaches, characterization and applications.  There are several synthetic approaches available to create a silica hydride surface.  Modification of the Si-H moiety on the silica surface can be accomplished through use of a hydrosilation reaction.  Both the intermediate silica hydride and the material modified with an organic moiety can be characterized by a number of spectroscopic as well as a variety of other methods.  Further insights into the retention mechanism are provide through chromatographic measurements.  The ultimate utility of any chromatographic stationary phase material is determined by its success for solving challenging analytical problems.  A broad range of applications are reviewed to illustrate the versatility and usefulness of silica hydride-based stationary phases. 


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