| Literature DB >> 31871997 |
V E Terekhov1, V V Aleshkevich1, E S Afanaseva1, S S Nechausov1, A V Babkin1, B A Bulgakov1, A V Kepman1,2, V V Avdeev1.
Abstract
Hydrolysis data for Bis(4-cyanophenyl) phenyl phosphate (CPP), introduced as a reactive diluent for phthalonitrile monomers, under pH 4, 7 and 10 are presented. Conversion/time plots collected by HPLC analysis, typical chromatograms and NMR spectra of the substrate and the reaction products are given. Pseudo-first order rate constants are determined for CPP at 25, 50 and 80 °C. Activation parameters were calculated from Arrhenius equation.Entities:
Keywords: Activation parameters; Aryl phosphate; Hydrolysis; Phthalonitrile resins; Rate constant; Reactive diluent
Year: 2019 PMID: 31871997 PMCID: PMC6909154 DOI: 10.1016/j.dib.2019.104858
Source DB: PubMed Journal: Data Brief ISSN: 2352-3409
Fig. 11H NMR spectrum of bis(4-cyanophenyl) phenyl phosphate.
Fig. 213C NMR spectrum of bis(4-cyanophenyl) phenyl phosphate.
Fig. 331P NMR spectrum of bis(4-cyanophenyl) phenyl phosphate.
Rate constants and conversion for hydrolysis of CPP at various pH values.
| T, °C | pH 4 | pH 7 | pH 10 | |||
|---|---|---|---|---|---|---|
| k, s−1 | Conversion, % | k, s−1 | Conversion, % | k, s−1 | Conversion, % | |
| 25 | 1.20 × 10−6 | 20 (48 h) | 9.72 × 10−6 | 80 (48 h) | 1.36 × 10−4 | 91 (5 h) |
| 35 | 2.70 × 10−6 | 40 (48 h) | 2.47 × 10−5 | 100 (48 h) | 4.28 × 10−4 | 100 (3 h) |
| 50 | 7.31 × 10−6 | 68 (48 h) | 8.33 × 10−5 | 100 (12 h) | 2.15 × 10−3 | 97.5 (30 min) |
| 60 | 1.89 × 10−5 | 73 (24 h) | 2.21 × 10−4 | 100 (6 h) | 4.94 × 10−3 | 99 (15 min) |
| 80 | 6.45 × 10−5 | 58 (4 h) | 9.69 × 10−4 | 100 (1.5 h) | – | 100 (3 min) |
Activation parameters of CPP hydrolysis.
| pH | ЕА, kcal/mole | А, s−1 |
|---|---|---|
| 4 | 15.22 | 1.73 × 105 |
| 7 | 17.52 | 6.87 × 107 |
| 10 | 20.43 | 1.31 × 1011 |
Fig. 5lnC-time plots for phthalonitrile CPP hydrolysis at different temperatures and pH 4.
Fig. 6lnC-time plots for phthalonitrile CPP hydrolysis at different temperatures and pH 7.
Fig. 7lnC-time plots for phthalonitrile CPP hydrolysis at different temperatures and pH 10.
Fig. 81H NMR spectrum of products of hydrolysis.
Fig. 913C NMR spectrum of products of hydrolysis.
Fig. 1031P NMR spectrum of products of hydrolysis.
Elution program applied for LC analysis.
| Time, min | Acetonitrile, % | H2O, % |
|---|---|---|
| 0–5 | 55 | 45 |
| 5–25 | 55–98 | 45–2 |
| 25–28 | 98 | 2 |
| 28–33 | 98–55 | 2–45 |
| 33–35 | 55 | 45 |
Fig. 4Established hydrolysis reaction of CPP under pH = 4, 7 and 10.
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| How data was acquired | Agilent 1260 chromatographer (column ZORBAX Eclipse Plus C18); |
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| Associated article |
The presented data gives new insights on hydrolysis of aryl-phosphoric esters and defines the limits of Chemists and engineers working with thermosetting resins, as well as physical chemists studying hydrolysis can benefit from these data. The presented data can be used to generalize hydrolysis behavior of aryl-phosphates and define the suitability of The data can help developing easy-processable highly heat-resistant thermosetting resins. Only one-step hydrolysis was detected under all considered pH values indicating only 4-cyanophenol elimination. |