In this paper, we describe experimental evidence of a change in the emission energy as a function of the Au−Au distance. We have employed a luminescent complex exhibiting an aurophilic interaction, which is weak enough to allow its length to be modified by external pressure but rigid enough to confer structural stability on the complex. By determining the crystal structures and emission characteristics over a range of pressures, we have identified an exponential relationship between the energy of the emitted light and the metal−metal distances under pressure. This result can be indirectly related to the repulsive branch of the fitted function representing the energy of the system in the ground state at different Au−Au distances. ...
Gold is a versatile material with unique properties that underpin its importance in medicine, cataly...
Author Institution: Department of Chemistry, Wesleyan Univeristy, 52 Lawn Avenue, Middletown, CT, 06...
Our analysis of the contact formation processes undergone by Au, Ag, and Cu nanojunctions reveals th...
In this paper, we describe experimental evidence of a change in the emission energy as a function o...
In this paper, we describe experimental evidence of a change in the emission energy as a function of...
In this paper we describe experimental evidence of the change in emission energy as a function of go...
Reaction of [Au<sub>2</sub>Ag<sub>2</sub>R<sub>4</sub>(Et<sub>2</sub>O)<sub>2</sub>] (R = C<sub>6</...
High pressure crystallographic studies on [1,4 C6H4{PPh2(AuCl)}2] (1) reveal the largest pressure-in...
A series of luminescent Au-Au and Au-Cu complexes were investigated by computational methods. The co...
Luminescence spectra for dithiocarbamate complexes of gold(I) and silver(I) display very different l...
The crystal structure of complex [Pb{HB(pz)3}Au(C6Cl5)2] 1 displays an unsupported Au(i)Pb(ii) inter...
We studied the interaction between [AuI2] and I2 using ab initio methodology. We found that the ch...
This is the first use of a wave-function-based crystallographic method to characterize aurophilic in...
We studied the interaction between [AuI2]- and I2 using ab initio methodology. We found that the cha...
Emission properties of dicyanoaurates(I) and tetracyanoplatinates(II) are investigated under high hy...
Gold is a versatile material with unique properties that underpin its importance in medicine, cataly...
Author Institution: Department of Chemistry, Wesleyan Univeristy, 52 Lawn Avenue, Middletown, CT, 06...
Our analysis of the contact formation processes undergone by Au, Ag, and Cu nanojunctions reveals th...
In this paper, we describe experimental evidence of a change in the emission energy as a function o...
In this paper, we describe experimental evidence of a change in the emission energy as a function of...
In this paper we describe experimental evidence of the change in emission energy as a function of go...
Reaction of [Au<sub>2</sub>Ag<sub>2</sub>R<sub>4</sub>(Et<sub>2</sub>O)<sub>2</sub>] (R = C<sub>6</...
High pressure crystallographic studies on [1,4 C6H4{PPh2(AuCl)}2] (1) reveal the largest pressure-in...
A series of luminescent Au-Au and Au-Cu complexes were investigated by computational methods. The co...
Luminescence spectra for dithiocarbamate complexes of gold(I) and silver(I) display very different l...
The crystal structure of complex [Pb{HB(pz)3}Au(C6Cl5)2] 1 displays an unsupported Au(i)Pb(ii) inter...
We studied the interaction between [AuI2] and I2 using ab initio methodology. We found that the ch...
This is the first use of a wave-function-based crystallographic method to characterize aurophilic in...
We studied the interaction between [AuI2]- and I2 using ab initio methodology. We found that the cha...
Emission properties of dicyanoaurates(I) and tetracyanoplatinates(II) are investigated under high hy...
Gold is a versatile material with unique properties that underpin its importance in medicine, cataly...
Author Institution: Department of Chemistry, Wesleyan Univeristy, 52 Lawn Avenue, Middletown, CT, 06...
Our analysis of the contact formation processes undergone by Au, Ag, and Cu nanojunctions reveals th...