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1,5-di(p-chlorophenyl)thiocarbazone, also known as DDTC, is an organic compound with the chemical formula C13H10Cl2N4S. It is a derivative of thiocarbazone, featuring two para-chlorophenyl groups attached to the 1,5-positions of the thiocarbazone core. DDTC is a yellow crystalline solid that is soluble in organic solvents and has been used as an analytical reagent for the detection of certain metal ions, particularly copper and silver, due to its ability to form colored complexes with these ions. It has also been studied for its potential applications in medicine and as a corrosion inhibitor. However, it is important to note that DDTC is not approved for use in pharmaceuticals or as a food additive, and its use in other applications may be subject to regulatory restrictions due to its potential health and environmental impacts.

1643-05-6

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1643-05-6 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 1643-05-6 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 1,6,4 and 3 respectively; the second part has 2 digits, 0 and 5 respectively.
Calculate Digit Verification of CAS Registry Number 1643-05:
(6*1)+(5*6)+(4*4)+(3*3)+(2*0)+(1*5)=66
66 % 10 = 6
So 1643-05-6 is a valid CAS Registry Number.

1643-05-6Relevant academic research and scientific papers

Femtosecond laser spectroscopy and DFT studies of photochromic dithizonatomercury complexes

Von Eschwege, Karel G.,Bosman, Gurthwin,Conradie, Jeanet,Schwoerer, Heinrich

, p. 844 - 855 (2014/03/21)

The ultrafast dynamics of the photochromic reaction of dithizonatophenylmercury(II) was recently reported. For purpose of investigating the effect of electronically different substituents (X = o-F, m-F, p-F, p-Cl, o-CH3, m-CH3, p-CH3, m,p-diCH3, p-OCH3, o-SCH3, and p-SCH3) on this reaction, a series of phenyl-substituted dithizones were synthesized and complexed with phenylmercury(II). A variation of more than 3 ps in ground state repopulation times was observed, with the o-methyl derivative absorbing both at shortest wavelength and having the fastest repopulation time, while the p-S-methyl derivative lies at the opposite extremity. An increase in both decay times and λmax values is generally reflected by an increase in electron density in the chromophore. Ultrafast rates also proved to be dependent on solvent polarity, while a profound solvatochromic effect was observed in the transition state absorbance. Density functional theory realistically simulated isomer stabilities, electronic spectra and molecular orbitals. Increased electron density enhances stability in the photoexcited blue isomer relative to the orange resting state, as seen from a comparison between orange and blue isomer total bonding energies. A linear trend between computed HOMO energies and experimental λmax of related aliphatic substituted derivatives was found.

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