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33299

Supelco

Micro-Reaction Vessel, black phenolic hole cap, pkg of 12

volume 5 mL, clear glass vial, PTFE/red rubber septum, O.D. × H 20 mm × 62 mm, thread for 20-400

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About This Item

Código UNSPSC:
41122001

Materiais

PTFE/red rubber septum
clear glass vial

Características

closure type black phenolic hole cap
closure type screw top vial
graduations
pre-assembled

embalagem

pkg of 12 ea

D.E. × A

20 mm × 62 mm

volume

5 mL

conector

thread for 20-400

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Descrição geral

Micro Reaction Vessels are cone shaped inside for easy removal of small samples. They are made of heavy-wall borosilicate glass and are supplied with PTFE-faced septum and cap. This glassware can be autoclaved or centrifuged. The septa material can not be autoclaved. The maximum temperature of the septa is less than 121 ºC.

Clear Micro Reaction Vessels
: Height with cap; depth from septum to bottom of cone.
Amber Micro Reaction Vessels: The height measurement is without the cap. The amber version is not graduated.

Depth from septum to bottom of cone:
Size
. . . . . . . . .Depth
0.3 mL. . . . . . .25 mm
1.0 mL. . . . . . .34 mm
2.0 mL. . . . . . .50 mm
3.0 mL. . . . . . .45 mm
5.0 mL. . . . . . .60 mm
10.0 mL . . . . . 69 mm

          

Aplicação

Micro reaction vessel was used for containing substrate-buffer solution, for determining angiotensin-converting enzyme (peptidyl dipeptidase) in serum, by liquid-chromatography assisted assay.

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S G Chiknas
Clinical chemistry, 25(7), 1259-1262 (1979-07-01)
I describe modification of the spectrophotometric assay described by Cushman and Cheung [biochem. Pharmacol. 20, 1637 (1971)] for serum angiotensin-converting enzyme, with use of "high-pressure" liquid chromatography to measure the hippuric acid end product. After reaction of 10 microL of
Pei Yuin Keng et al.
Proceedings of the National Academy of Sciences of the United States of America, 109(3), 690-695 (2012-01-03)
We have developed an all-electronic digital microfluidic device for microscale chemical synthesis in organic solvents, operated by electrowetting-on-dielectric (EWOD). As an example of the principles, we demonstrate the multistep synthesis of [(18)F]FDG, the most common radiotracer for positron emission tomography

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