Tetraconazole, ROTICHROM® Pestilyse® HPLC, 10 mg, glass

Catalog nr. 236E.1
Carl Roth

Volume: 10 mg
Value Packs: 1 piece
Price:
Sale price€203,20
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Description

Tetraconazole is a ROTICHROM® Pestilyse® HPLC reference material intended for analytical and environmental chromatography of fungicide residues. It is characterised by CAS number 112281-77-3, empirical formula C₁₃H₁₁Cl₂F₄N₃O, molar mass 372,15 g/mol, density 1,438 g/cm³ and EG nr. 407-760-6. The substance is packed as 10 mg in glass, providing a compact quantity suitable for preparing calibration standards and control samples in HPLC workflows. This grade from manufacturer Carl ROTH is aimed at laboratories performing environmental analysis, residue monitoring and related chromatographic methods. Reported molar mass and density support accurate preparation of solutions and transparent reporting. The product aligns with applications in chromatography and gas chromatography where defined pesticide reference standards are essential. Clear CAS, formula and EG identifiers help maintain traceability from receipt through analytical use and quality-system documentation.

This article is part of Conductivity meters & cells, in pH & electrochemistry. See also pH meters.

Key features

  • Assay: ≥99,5 %
  • CAS number: 112281-77-3
  • Pack size: 10 mg glass
  • EG nr.: 407-760-6
  • Empirical formula: C₁₃H₁₁Cl₂F₄N₃O
  • Molar mass: 372,15 g/mol
  • Density: 1,438 g/cm³
  • Safety Data Sheet: PDF

Compliance & Safety Information

GHS07 Warning

Hazard Statements (H-Phrases)

H302+ H302+ – No description available
H332 Harmful if inhaled
H410 Very toxic to aquatic life with long lasting effects

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Questions about Tetraconazole, ROTICHROM® Pestilyse® HPLC, 10 mg, glass

What is this article?

Tetraconazole, ROTICHROM® Pestilyse® HPLC, 10 mg, glass is the article on this page. Luminix Health distributes Carl Roth for laboratory use. It sits in Conductivity meters & cells, inside pH & electrochemistry, in Lab instruments.

A conductivity meter and its cell measure how well a solution carries current. The cell constant is the geometry that converts conductance to conductivity, and it is calibrated with a standard. Temperature compensation matters because conductivity rises with temperature.

A pH meter is a voltmeter on a glass electrode. The voltage tracks hydrogen-ion activity, and the electrode is converted to pH only after it is adjusted with buffers of known value. Conductivity measures how well a solution carries a current, which for dilute salts tracks concentration. Dissolved oxygen and titration are further electrodes on the same idea: a sensor, a standard, and a reading that is only as fresh as the calibration. Buffer values and chemical identity sit on PubChem. Accreditation of the calibration laboratory is the field of BELAC and EURAMET.

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The technical information on this page is the manufacturer's sheet. Read that, not a rewritten specification.

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