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Self-aligning subatmospheric hybrid liquid junction electrospray interface for capillary electrophoresis
J. Krenkova, K. Kleparnik, J. Grym, J. Luksch, F. Foret,
Jazyk angličtina Země Německo
Typ dokumentu časopisecké články, práce podpořená grantem
PubMed
26331678
DOI
10.1002/elps.201500357
Knihovny.cz E-zdroje
- MeSH
- design vybavení MeSH
- dextrany MeSH
- elektroforéza kapilární přístrojové vybavení MeSH
- hmotnostní spektrometrie s elektrosprejovou ionizací přístrojové vybavení MeSH
- mikrofluidní analytické techniky přístrojové vybavení MeSH
- peptidy MeSH
- Publikační typ
- časopisecké články MeSH
- práce podpořená grantem MeSH
We report a construction of a self-aligning subatmospheric hybrid liquid junction electrospray interface for CE eliminating the need for manual adjustment by guiding the capillaries in a microfabricated liquid junction glass chip at a defined angle. Both the ESI and separation capillaries are inserted into the microfabricated part until their ends touch. The distance between the capillary openings is defined by the angle between the capillaries. The microfabricated part contains channels for placement of the capillaries and connection of the external electrode reservoirs. It was fabricated using standard photolithographic/wet chemical etching techniques followed by thermal bonding. The liquid junction is connected to a subatmospheric electrospray chamber inducing the flow inside the ESI needle and helping the ion transport via aerodynamic focusing.
Citace poskytuje Crossref.org
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- $a We report a construction of a self-aligning subatmospheric hybrid liquid junction electrospray interface for CE eliminating the need for manual adjustment by guiding the capillaries in a microfabricated liquid junction glass chip at a defined angle. Both the ESI and separation capillaries are inserted into the microfabricated part until their ends touch. The distance between the capillary openings is defined by the angle between the capillaries. The microfabricated part contains channels for placement of the capillaries and connection of the external electrode reservoirs. It was fabricated using standard photolithographic/wet chemical etching techniques followed by thermal bonding. The liquid junction is connected to a subatmospheric electrospray chamber inducing the flow inside the ESI needle and helping the ion transport via aerodynamic focusing.
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