H3btc
The H3BTC is a laboratory instrument designed for the analysis and quantification of biological samples. It utilizes a specialized detection method to measure specific biochemical components within the samples. The core function of the H3BTC is to provide accurate and reliable data to support scientific research and clinical testing.
2 protocols using h3btc
Synthesis of Lanthanide-Doped Metal-Organic Frameworks
Synthesis and Characterization of Zirconium-Based MOF
oxychloride octahydrate (ZrOCl2·8H2O, ≥99.0%,
Aladdin), 1,3,5-benzenetricarboxylic acid (H3BTC, ≥96.0%,
Macklin), N,N-dimethylformamide (DMF, ≥99.5%,
Macklin), formic acid (CH2O2, ≥98.0%,
Macklin), poly(vinylidene fluoride) (PVDF, Macklin), poly(vinylpyrrolidone)
(PVP, Aladdin), imidazole (C3H4N2, ≥99.0%, Macklin), titanium tetrachloride (TiCl4, ≥99.0%, Macklin), 4-nitrophenol (C6H5NO3, ≥99.5%, Macklin), dimethyl chlorophosphate
((CH3O)2P(O)Cl, 96.0%, Aladdin), triethylamine
(C6H15N, ≥99.0%, Aladdin), tetrahydrofuran
(C4H8O, ≥99.9%, Aladdin), ethyl acetate
(C4H8O2, ≥99.5%, Aladdin), n-hexane (C6H14, ≥98.0%, Aladdin),
acetone (C3H6O, ≥99.8%, Merckmillipore),
magnesium sulfate anhydrous (MgSO4, ≥99.9%, Macklin),
chloroform-d (CDCl3, 99.8%, LaboTecc),
methyl sulfoxide-d6 (DMSO-d6, 99.9%, Macklin) and sulfuric acid-d2 solution (D2SO4, 99.5%, Aladdin)
were obtained from available commercial sources and used without further
purification. DMNP was synthesized by following the reported procedure,38 (link) and the details were described in the
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