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About This Item
UNSPSC Code:
41115700
NACRES:
SB.52
L × i.d.:
15 cm × 4.6 mm
Particle size:
5 μm
Matrix active group:
ammonium ion, quaternary phase
Pore size:
100 Å
Matrix:
PS-DVB particle platform, polymeric
Product Name
Hamilton PRP-X100 HPLC Column, 5 μm particle size, L × I.D. 15 cm × 4.6 mm, PEEK hardware
operating pH
1-14
separation technique
anion exchange
material
PEEK column
manufacturer/tradename
Hamilton
packaging
1 ea of
technique(s)
HPLC: suitable
L × I.D.
15 cm × 4.6 mm
matrix
PS-DVB particle platform, polymeric
matrix active group
ammonium ion, quaternary phase
particle size
5 μm
pore size
100 Å
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General description
The Hamilton PRP-X100, polymeric HPLC columns used for the separation of anions in ion chromatography.
Application
- Fluoride effects on cell viability and ENaC expression in kidney epithelial cells.: The research investigates the effects of fluoride on cell viability and ENaC expression in kidney epithelial cells, highlighting the broader implications of fluoride chemistry in biological systems. The study provides insights into fluoride′s impact at the cellular level, useful for analytical chemists studying biological interactions (Santesso MR et al., 2021).
- TMT-based quantitative proteomics analysis reveals the response of tea plant (Camellia sinensis) to fluoride.: Utilizing TMT-based quantitative proteomics, this research details the proteomic response of tea plants to fluoride exposure, providing a comprehensive analysis beneficial for chemists involved in plant biochemistry and analytical chemistry (Liu Y et al., 2018).
- Label-free electrochemical detection of the human adenovirus 40/41 fiber gene.: This article presents a label-free electrochemical method for detecting human adenovirus genes, employing fluoride-based electrochemical processes. The research showcases applications in virology and analytical detection techniques (Song MJ and Jin JH, 2015).
Storage Class
11 - Combustible Solids
wgk
WGK 3
flash_point_f
Not applicable
flash_point_c
Not applicable
Regulatory Information
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