We present an electron spectroscopy study of the development of the electronic structure in the K-doped C-60 monolayer on a Ag(1 1 1) surface. We find that the occupation of the lowest unoccupied molecular orbital (LUMO) of the C-60 can be varied continuously from 0.75 (undoped) to 6.0 (fully doped). We also find that the density of states at the Fermi level for a doping level corresponding to 3 electrons per C-60 is at least a factor of two higher than that found from photoemission on bulk K3C60. This enhanced density of states at the Fermi level might suggest an increased superconducting transition temperature for the monolayer system. (C) 1997 Elsevier Science Ltd.</p
HIGH-resolution photoemission and soft X-ray absorption spectroscopies have provided valuable inform...
We report on an ultrahigh resolution photoemission study on the topmost molecular layer of K3C60 and...
We report on an ultrahigh resolution photoemission study on the topmost molecular layer of K3C60 and...
We present an electron spectroscopy study of the development of the electronic structure in the K-do...
We present an electron spectroscopy study of the development of the electronic structure in the K-do...
We present an electron spectroscopy study of the development of the electronic structure in the K-do...
The density of states of the lowest unoccupied molecular orbital band as a function of K doping was ...
High-resolution angle-integrated photoemission of one monolayer of C-60 chemisorbed on Ag(100) shows...
We present a detailed investigation of the surface electronic structure of solid K3C60 in connection...
We observe, with angle-resolved photoemission, a dramatic change in the electronic structure of two ...
K-doped C60 monolayers on polycrystalline Cu, Ag, and Au are studied by means of ultraviolet photoel...
We present a detailed investigation of the surface electronic structure of solid K;CM, and Rb3C60 in...
K-doped C-60 monolayers on polycrystalline Cu, Ag, and Au are studied by means of ultraviolet photoe...
We present a detailed investigation of the surface electronic structure of solid K;CM, and Rb3C60 in...
The adsorption of C60 in submonolayer and monolayer coverages on Cs-precovered Au(110) has been inve...
HIGH-resolution photoemission and soft X-ray absorption spectroscopies have provided valuable inform...
We report on an ultrahigh resolution photoemission study on the topmost molecular layer of K3C60 and...
We report on an ultrahigh resolution photoemission study on the topmost molecular layer of K3C60 and...
We present an electron spectroscopy study of the development of the electronic structure in the K-do...
We present an electron spectroscopy study of the development of the electronic structure in the K-do...
We present an electron spectroscopy study of the development of the electronic structure in the K-do...
The density of states of the lowest unoccupied molecular orbital band as a function of K doping was ...
High-resolution angle-integrated photoemission of one monolayer of C-60 chemisorbed on Ag(100) shows...
We present a detailed investigation of the surface electronic structure of solid K3C60 in connection...
We observe, with angle-resolved photoemission, a dramatic change in the electronic structure of two ...
K-doped C60 monolayers on polycrystalline Cu, Ag, and Au are studied by means of ultraviolet photoel...
We present a detailed investigation of the surface electronic structure of solid K;CM, and Rb3C60 in...
K-doped C-60 monolayers on polycrystalline Cu, Ag, and Au are studied by means of ultraviolet photoe...
We present a detailed investigation of the surface electronic structure of solid K;CM, and Rb3C60 in...
The adsorption of C60 in submonolayer and monolayer coverages on Cs-precovered Au(110) has been inve...
HIGH-resolution photoemission and soft X-ray absorption spectroscopies have provided valuable inform...
We report on an ultrahigh resolution photoemission study on the topmost molecular layer of K3C60 and...
We report on an ultrahigh resolution photoemission study on the topmost molecular layer of K3C60 and...