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Trihexyltetradecylphosphonium chloride

Manufactured by Merck Group
Sourced in United States

Trihexyltetradecylphosphonium chloride is a chemical compound used in various laboratory applications. It functions as a surfactant and ionic liquid with properties that can be useful in specific research and experimental settings. The detailed applications and uses of this product require further investigation and are not included in this factual description.

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4 protocols using trihexyltetradecylphosphonium chloride

1

Stainless Steel Surface Preparation

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Trihexyltetradecylphosphonium
chloride ([P66614][Cl], 95.0%), hydrochloric acid (HCl, 37%), acetone
(99.9%), and ethanol (99.8%) were purchased from Sigma-Aldrich (St.
Louis, MO, USA) and used without further purification. 304 stainless
steel was obtained from POSCO (Pohang, Republic of Korea). Masking
tape (polyimide film tape 5413 Amber) was obtained from 3M (St. Paul,
MN, USA). Millipore water (>18 MΩ·cm) was used in all
the
experiments.
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2

Synthesis and Characterization of Pharmaceutical Compounds

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Trihexyl(tetradecyl)phosphonium chloride (≥ 95.0%), gadolinium(III) chloride hexahydrate (99.0%), acetone (≥ 99.9%), and phosphoric acid (≥ 99.999% trace metal basis) were purchased from Sigma-Aldrich (St. Louis, MO, USA). Dichloromethane (99.9%), manganese(II) chloride tetrahydrate (≥ 99.0%), and iron(III) chloride hexahydrate (≥ 99.0%) were purchased from Acros Organics (Pittsburgh, PA, USA). Acetonitrile (HPLC grade), methanol (HPLC grade), sodium chloride (≥ 99.0%), sodium hydroxide (≥ 97.0%), and hydrochloric acid (ACS, ≥ 38.0%) were purchased from Fisher Scientific (Fair Lawn, NJ, USA). Azilsartan medoxomil (≥ 99.5%), irbesartan (99.6%), telmisartan (99.5%), and valsartan (99.5%) were generously donated by Sigma Pharmaceutical Industries (Quesna, Menofyia, Egypt).
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3

Synthesis and Preparation of Metal-Humate Complexes

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The IL precursors trihexyltetradecylphosphonium chloride (95%) and 3-hydroxy-2-naphthoic acid (98%) were purchased from Sigma-Aldrich (USA), methyl-trioctylphosphonium methylcarbonate (purum, 50% in methanol) and methyl-trioctylammonium methylcarbonate (purum, 50% in methanol) from Proionic (Austria). For synthesis and sample preparations, potassium hydroxide (p.a., 85%) from Merck (Germany), methanol (HPLC grade, 99.9%), dichloromethane (HPLC grade, 99.9%), sodium chloride (99%), nitric acid (p.a., 65%), and sodium hydroxide (98%) from Panreac (Spain), and humic acid sodium salt (technical grade) from Sigma-Aldrich were used. Standard solutions of metals Ag, Cd, Co, Cu, Mn, Ni, and Pb 1,000 mg L−1 in 2–4% (w/w) HNO3, purchased from Sigma-Aldrich, were used for atomic absorption spectroscopy measurements and to prepare feed solutions. Ultra-pure water of resistivity <18.2 MΩ cm was obtained from a Millipore Milli-Q Academic apparatus (Merck Millipore, USA).
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4

Synthesis of Phosphonium-Based Ionic Liquid Precursor

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For synthesis, the IL precursor trihexyltetradecylphosphonium chloride (95%) and 3-hydroxy-2-naphthoic acid (98%) were purchased from Sigma-Aldrich (USA) along with potassium hydroxide (p.a., ≥86%) and the solvents methanol (HPLC grade, ≥99.9%) and dichloromethane (p.a., ≥99.9%). Element standard solutions of La, Ce and Lu (1000 mg L−1 ± 4) in 2% (w/w) HNO3 for the preparation of the extraction solutions were purchased from Sigma-Aldrich (USA), Nd and Ho (999 μg mL−1 ± 5) in 5% (w/w) HNO3 from AlfaAesar. The Pt standard solution (1000 mg L−1 in 10% (w/w) HCl) used for sample preparations before TXRF measurements was purchased from VWR. A 3.0 g L−1 polyvinyl alcohol (PVA) solution was prepared from hydrolysed polyvinyl alcohol (86–89%) with low molecular weight (AlfaAesar). For pH adjustment and dilutions, we used sodium hydroxide (50% (w/w) in H2O, extra pure, Acros Organics) and nitric acid (>68%, PrimarPlus-trace analysis grade, Fisher Scientific). Ultra-pure water of resistivity >18.2 MΩ cm was obtained from a Millipore Milli-Q apparatus (Merck Millipore, USA).
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