19847
Paclobutrazol-(phenyl-d4)
PESTANAL®, analytical standard
Synonym(e):
(2RS,3RS)-1-(4-Chlorphenyl-d4)-4,4-dimethyl-2-(1H-1,2,4-
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About This Item
Empfohlene Produkte
Qualität
analytical standard
Qualitätsniveau
Produktlinie
PESTANAL®
Assay
≥98.0% (HPLC)
Haltbarkeit
limited shelf life, expiry date on the label
Anwendung(en)
agriculture
Format
neat
Allgemeine Beschreibung
Paclobutrazol-(phenyl-d4) is an isotope labeled analog of the triazole fungicide paclobutrazol, wherein the C-2, C-3, C-5, and C-6 phenyl protons are replaced by deuterium.
Anwendung
Isotope-labeled compounds are increasingly used in isotope dilution mass spectrometry (IDMS) for the quantitative analysis of pesticides. The major advantage of using this technique is that the isotope-labeled compounds have nearly the same physical properties as their non-labeled counterpart analogs, and thus show identical behavior during the workup and sample preparation process. This helps in overcoming the problems of matrix effects generally encountered in the usual LC-MS/GC-MS analysis, potentially resulting in biased results. By spiking the sample before workup with its isotope labeled analog, the loss of analyte that leads to matrix effects can be determined and compensated.
Rechtliche Hinweise
PESTANAL is a registered trademark of Merck KGaA, Darmstadt, Germany
Signalwort
Danger
Gefahreneinstufungen
Acute Tox. 4 Inhalation - Acute Tox. 4 Oral - Aquatic Acute 1 - Aquatic Chronic 1 - Eye Irrit. 2 - Flam. Sol. 1 - Repr. 2
Lagerklassenschlüssel
4.1B - Flammable solid hazardous materials
WGK
WGK 3
Flammpunkt (°F)
Not applicable
Flammpunkt (°C)
Not applicable
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Colloids and surfaces. B, Biointerfaces, 60(2), 180-186 (2007-07-24)
The application of triazole fungicides is a common practice in the cultivation of carrot (Daucus carota L.) plants. It is there for seems important to test the changes that are occurring in this food crop under triazoles, the non-traditional plant
Science (New York, N.Y.), 367(6478) (2020-02-08)
Because environmentally degrading inorganic fertilizer use underlies current worldwide cereal yields, future agricultural sustainability demands enhanced nitrogen use efficiency. We found that genome-wide promotion of histone H3 lysine 27 trimethylation (H3K27me3) enables nitrogen-induced stimulation of rice tillering: APETALA2-domain transcription factor
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