Supported by the National Natural Science Foundation of China(No.20273013);the Natural Science Foundation of Fujian Province(No.2002F010);the State Key Laboratory of Structural Chemistry(20090060)
Adsorption behaviors of 2-bromothiophene on the Rh(111) surface were discussed with DFT. The results revealed that adsorption at the parallel hol site and bridge site was the most stable. After adsorption, bond leng...
Supported by the National Natural Science Foundation of China (No 20273013);the Important Special Foundation of Fujian Province (No 2005HZ01-2-6);the Natural Education Department Foundation of PhD Unit (No 20050386003)
Thiophene adsorption on the(111) surfaces of Pd and Pt have been investigated by density functional theory.The results indicate that the adsorption at the hollow sites is the most stable.To our interest,the molecula...
supported by the Special Foundation for Young Scientists of Fuzhou University (XRC-0644);Sci & Tech Promotion Foundation of Fuzhou University (XJJ-0605);the Key Project of Fujian Province (2005HZ01-2-6);Ph D Programs Foundation of Ministry of Education of China (20050386003);the National Natural Science Foundation of China (20273013);Natural Science Foundation of Fujian Province (2002F010)
Thiophene adsorption on the Rh(111) surfaces has been investigated by density functional theory.The results show that the adsorption at the hollow and bridge sites is the most stable.The molecular plane of the thiop...
Project supported by the National Natural Science Foundation of China (No. 20273013), the Fujian Provincial Department of Education (No JA03020) and Science and Technology Foundation of Fuzhou University (No. 2005-XQ-03).
Adsorption of methanol and methoxy at four selected sites (top, bridge, hcp, fcc) on Cu(111) surface has been investigated by density functional theory method at the generalized gradient approximation (GGA) leve...
This research was supported by the National Natural Science Foundation of China (20273013, 20303002), the Educational Foundation of Fujian Province (2002F010), and the Foundation of State Key Laboratory of Structural Chemistry (020051) and Fuzhou University (2004XY04)
The adsorption and reaction of O + CN → OCN on Cu(100) are studied by using density functional theory and cluster model. Cu14 cluster model is used to simulate the surface. The calculated results show that the OCN...