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Pure fluid parameters for non-polar low molecular weight compounds and polymers are reported.
By varying the combination of silver salts and bridging ligands, we have synthesized 0D, 1D, 2D and 3D architectures of silver(I) coordination compounds and polymers.
With this new predictive correlation, liquid phase heat capacities for ill-defined hydrocarbon fluids, such as bitumen, and pure compounds and polymers can be predicted with equal ease.
The synthesis via microwave-assisted Cu(I -catalyzed azI -catalyzedycloazide alkynethe reacycloadditions based of sulfur, selenium and thelureactiveactive sites is polymersd; full characterization of model compounds and polymers is provided.
It was a good solvent for many nonpolar compounds and polymers.
The candidate compounds included low-molecular-weight substances (amino acids, polyamines, and phenolic compounds) and polymers.
Similar(48)
Transferability of the association constants between model compounds and polymer blends, as well as model predictions of blend miscibility and phase diagrams, are discussed.
The fluorescence of the model compound and polymer with a diphenylmaleimide moiety is almost quenched due to the ferrocene group because of the intramolecular electron transfer.
A solution mixture of 50 μL of sample solution (10 mg·mL–1 of calibration compound and polymer) with 50 μL of 10 mg·mL–1 H2O2/0.1 M NaHCO3 (500 μg, 14.7 μmol, 3 equiv with respect to ethanolamine) solution and 4.950 mL of NaHCO3 (0.1M) was prepared.
Cyclic voltammetry and differential pulse voltammetry techniques were used to determine the electronic properties of the studied compounds and obtained polymers.
Discrete coordination compounds and coordination polymers are topical research fields in inorganic chemistry, crystal engineering, solid-state chemistry, and materials science, due to their potential applications in adsorption, separation, catalysis, electrical, magnetic, and optical applications.
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