Protein Information

ID 1676
Name CCl 3
Synonyms CCL 3; CCL3; G0/G1 switch regulatory protein 19 1; G0S19 1; G0S19 1 protein; LD78 alpha; LD78ALPHA; MIP 1 alpha Tonsillar lymphocyte LD78 alpha protein…

Compound Information

ID 1392
Name carbon tetrachloride
CAS tetrachloromethane

Reference

PubMed Abstract RScore(About this table)
17134213 Lu G, Lan J, Li C, Wang W, Wang C: Theoretical study of CCl (4) adsorption and hydrogenation on a Pt (111) surface. J Phys Chem B. 2006 Dec 7;110(48):24541-8.
The adsorption and hydrogenation of carbon tetrachloride (CCl (4)) on a Pt (111) surface have been investigated using density functional theory (DFT). We have performed calculations on the adsorption energies and structures of CCl (4) on four different adsorption sites of a Pt (111) surface using the full adsorbate geometry optimization method. The results show that the adsorption energy of all of the potential sites is less than -17 kcal/mol, which indicates that CCl (4) is physiosorbed on a Pt (111) surface through van der Waals interactions. The dissociation and hydrogenation pathways were investigated by a transition state search. For the Pt (15), Pt (19), and Pt (25) cluster surfaces, the activation energies of dissociation obtained in this work are 15.69, 16.94, and 16.77 kcal/mol, respectively. The hydrogenation of CCl (3). was studied at the on-top site of the Pt (15) cluster, and the calculated activation energy is 5.06 kcal/mol. The small activation energies indicate that the Pt (111) surface has high catalytic activity for the CCl (4) hydrogenation reaction. In addition, the Hirshfeld population analysis reveals that the charge transfer from the Pt (111) surface to the adsorbates occurs in both the dissociation and hydrogenation pathways.
1(0,0,0,1)