Thermal decomposition of lutetium propionate
β Scribed by J.-C. Grivel
- Publisher
- Elsevier Science
- Year
- 2010
- Tongue
- English
- Weight
- 570 KB
- Volume
- 89
- Category
- Article
- ISSN
- 0165-2370
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β¦ Synopsis
The thermal decomposition of lutetium(III) propionate monohydrate (Lu(C 2 H 5 CO 2 ) 3 β’H 2 O) in argon was studied by means of thermogravimetry, differential thermal analysis, IR-spectroscopy and X-ray diffraction. Dehydration takes place around 90 β’ C. It is followed by the decomposition of the anhydrous propionate to Lu 2 O 2 CO 3 with evolution of CO 2 and 3-pentanone (C 2 H 5 COC 2 H 5 ) between 300 β’ C and 400 β’ C. The further decomposition of Lu 2 O 2 CO 3 to Lu 2 O 3 is characterized by an intermediate constant mass plateau corresponding to a Lu 2 O 2.5 (CO 3 ) 0.5 overall composition and extending from approximately 550 β’ C to 720 β’ C. Full conversion to Lu 2 O 3 is achieved at about 1000 β’ C. Whereas the temperatures and solid reaction products of the first two decomposition steps are similar to those previously reported for the thermal decomposition of lanthanum(III) propionate monohydrate, the final decomposition of the oxycarbonate to the rare-earth oxide proceeds in a different way, which is here reminiscent of the thermal decomposition path of Lu(C 3 H 5 O 2 )β’2CO(NH 2 ) 2 β’2H 2 O.
π SIMILAR VOLUMES
The kinetics of decomposition of beclomethasone dipropionate (BDP), the 17-monopropionate ester (17-BMP), and beclomethasone (BOH) were characterized in whole human plasma (HP), pH 7.1, and in solutions of 1% human serum albumin (HSA), pH 7.4, and 0.067 M phosphate buffer, pH 7.4 (v=0.17). A reverse