Study on mechanism of stacking of zwitterion in highly saline biologic sample by transient moving reaction boundary created by formic buffer and conjugate base in capillary electrophoresis.

scientific article published on 5 February 2009

Study on mechanism of stacking of zwitterion in highly saline biologic sample by transient moving reaction boundary created by formic buffer and conjugate base in capillary electrophoresis. is …
instance of (P31):
scholarly articleQ13442814

External links are
P356DOI10.1016/J.TALANTA.2009.01.054
P698PubMed publication ID19269493

P50authorChengxi CaoQ54997254
P2093author name stringWei Zhu
Wei Zhang
Jing Shao
Jin-Lian Chen
Si Li
Liu-Yin Fan
P433issue3
P407language of work or nameEnglishQ1860
P304page(s)1194-1200
P577publication date2009-02-05
P1433published inTalantaQ730331
P1476titleStudy on mechanism of stacking of zwitterion in highly saline biologic sample by transient moving reaction boundary created by formic buffer and conjugate base in capillary electrophoresis
P478volume78

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cites work (P2860)
Q38199367Application of capillary electrophoresis for the early diagnosis of cancer
Q43593965CE-MS based on moving reaction boundary method for urinary metabolomic analysis of gastric cancer patients
Q47226365Migration behaviour of discontinuous buffers in capillary electrophoresis during protein enrichment
Q37946805Online sample pre-concentration via dynamic pH junction in capillary and microchip electrophoresis
Q42926725Study of electromigration effects on a pH boundary during the on-line electrokinetic preconcentration by capillary electrophoresis.
Q51578674Time-varying migration process of moving neutralization boundary on the immobilized pH gradient strip in the weak-base rehydration buffer.
Q36455572Urine Metabolite Profiling of Human Colorectal Cancer by Capillary Electrophoresis Mass Spectrometry Based on MRB.

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