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The two compounds were stable at lower pH.
Moreover, the compounds were stable for three cycles of freezing and thawing.
Compounds were stable up to 50 days after extraction in −20 °C and 48 h at RT.
Further, the compounds were stable up to ≈200 °C and the degradation occurs at higher temperature as evident from the TGA analysis.
The stability and reactivity of each electrophile is presented in Figure 2. All of the compounds were stable to the reaction conditions, represented by the open symbols in the figure.
The compounds were stable in mouse serum up to 120 min and the highest binding affinity using a cell binding assay as well was found for NOTA-E[PEG4-c RGDfK ]2. NOTA-E[PEG4-c RGDfK ]2
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These "missing" ICSD compounds are reasonable guesses for stable compounds, as many ICSD compounds are stable.
These compounds are stable up to 345 °C according to thermogravimetric analysis.
All detected compounds are stable, formed either as direct products of AC irradiation (CO and CH4), or from secondary reaction of primary radical products with each other or the parent AC.
The EPR and 51V-NMR spectra of aerated solutions at room temperature indicate that the compounds are stable to hydrolysis and that no significant oxidation of VIV to VV takes place at least in 24 h.
Both compounds are stable up to about 300 °C, and exhibit intense fluorescent emission band at 446 nm (λexc = 328 nm) for 1 and 420 nm (λexc = 340 nm) for 2 in the solid state at room temperature.
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