New O 1s and N 1s scanned-energy mode photoelectron diffraction (PhD) measurements and low energy electron diffraction observations from the Cu(100)(2x4)pg phase formed by deprotonated glycine, glycinate (NH2CH2COO-) have been used to determine the local structure of this adsorbed phase. The favored model involves bonding of both O atoms of the carboxylate and the N atom of the amino group in near atop sites with Cu-N and Cu-O distances of 2.05 Angstrom. This bonding geometry is similar to that of glycinate on Cu(110), but in this case the fact that the C-C backbone is aligned along [100] straggling the more widely spaced Cu atoms rows leads to a larger offset from atop of the O atoms. A reanalysis of O 1s PhD data from the Cu(110)(3x2)pg-g...
Low-energy electron diffraction(LEED) and scanning tunneling microscopy(STM) have been used to deter...
Suggestions that homochiral ordered phases of glycinate, NH2CH2COO–, may exist on Cu(1 1 0) and Cu(1...
Suggestions that homochiral ordered phases of glycinate, NH2CH2COO–, may exist on Cu(1 1 0) and Cu(1...
New O 1s and N 1s scanned-energy mode photoelectron diffraction (PhD) measurements and low energy el...
New O 1s and N 1s scanned-energy mode photoelectron diffraction (PhD) measurements and low energy el...
New O 1s and N 1s scanned-energy mode photoelectron diffraction (PhD) measurements and low energy el...
New O 1s and N 1s scanned-energy mode photoelectron diffraction (PhD) measurements and low energy el...
Scanned-energy mode N ls and O ls photoelectron diffraction has been used to determine the local geo...
Scanned-energy mode N 1s and O 1s photoelectron diffraction has been used to determine the local geo...
The local adsorption site of the deprotonated simple amino acid glycine (glycinate) on Cu(111) has b...
We present a quantitative low energy electron diffraction (LEED) surface-crystallograpic study of t...
The local adsorption site of the deprotonated simple amino acid glycine (glycinate) on Cu(111) has b...
The local adsorption site of the deprotonated simple amino acid glycine (glycinate) on Cu(111) has b...
Suggestions that homochiral ordered phases of glycinate, NH2CH2COO-, may exist on Cu(110) and Cu(100...
Low-energy electron diffraction(LEED) and scanning tunneling microscopy(STM) have been used to deter...
Low-energy electron diffraction(LEED) and scanning tunneling microscopy(STM) have been used to deter...
Suggestions that homochiral ordered phases of glycinate, NH2CH2COO–, may exist on Cu(1 1 0) and Cu(1...
Suggestions that homochiral ordered phases of glycinate, NH2CH2COO–, may exist on Cu(1 1 0) and Cu(1...
New O 1s and N 1s scanned-energy mode photoelectron diffraction (PhD) measurements and low energy el...
New O 1s and N 1s scanned-energy mode photoelectron diffraction (PhD) measurements and low energy el...
New O 1s and N 1s scanned-energy mode photoelectron diffraction (PhD) measurements and low energy el...
New O 1s and N 1s scanned-energy mode photoelectron diffraction (PhD) measurements and low energy el...
Scanned-energy mode N ls and O ls photoelectron diffraction has been used to determine the local geo...
Scanned-energy mode N 1s and O 1s photoelectron diffraction has been used to determine the local geo...
The local adsorption site of the deprotonated simple amino acid glycine (glycinate) on Cu(111) has b...
We present a quantitative low energy electron diffraction (LEED) surface-crystallograpic study of t...
The local adsorption site of the deprotonated simple amino acid glycine (glycinate) on Cu(111) has b...
The local adsorption site of the deprotonated simple amino acid glycine (glycinate) on Cu(111) has b...
Suggestions that homochiral ordered phases of glycinate, NH2CH2COO-, may exist on Cu(110) and Cu(100...
Low-energy electron diffraction(LEED) and scanning tunneling microscopy(STM) have been used to deter...
Low-energy electron diffraction(LEED) and scanning tunneling microscopy(STM) have been used to deter...
Suggestions that homochiral ordered phases of glycinate, NH2CH2COO–, may exist on Cu(1 1 0) and Cu(1...
Suggestions that homochiral ordered phases of glycinate, NH2CH2COO–, may exist on Cu(1 1 0) and Cu(1...