We present the chemical synthesis as well as charge transport measurements and calculations for a new tripodal platform based on a rigid 9,9′-spirobifluorene equipped with a phenylene-ethynylene wire. The transport experiments are performed with the help of the low-temperature mechanically controlled break junction technique with gold electrodes. By combining experimental and theoretical investigations of elastic and inelastic charge transport, we show that the current proceeds through the designated molecular wire and identify a binding geometry that is compatible with the experimental observations. The conductive molecular wire on the platform features a well-defined and relatively high conductance of the order of 10 −3 G 0 despite the le...
This paper reports highly efficient coherent tunneling in single-molecule wires of oligo-ferrocenes ...
Single molecule-based devices represent the ultimate limit in device design, with promising applicat...
Molecular electronics is considered a promising approach for future nanoelectronic devices. In order...
Charge transport characteristics of asymmetric :molecules containing a 9,9 '-spirobitluorene platfor...
Single molecule conductance of two spirobifluorene molecules of different length have been studied b...
A tetraphenylmethane tripod functionalized with three thiol moieties in the para position can serve ...
Controlling the orientation of molecular conductors on the electrode surfaces is a critical factor i...
This work compares single molecule conductance measurements of selected organic systems containing i...
This work compares single molecule conductance measurements of selected organic systems containing i...
As the field of molecular‐scale electronics matures and the prospect of devices incorporating molecu...
Controlling the orientation of molecular conductors on the electrode surfaces is a critical factor i...
Future applications of single-molecular and large-surface area molecular devices require a thorough ...
Future applications of single-molecular and large-surface area molecular devices require a thorough ...
Controlling the orientation of molecular conductors on the electrode surfaces is a critical factor i...
This article describes arylene–ethynylene molecular wires with 7 nm long backbones and thiolated ter...
This paper reports highly efficient coherent tunneling in single-molecule wires of oligo-ferrocenes ...
Single molecule-based devices represent the ultimate limit in device design, with promising applicat...
Molecular electronics is considered a promising approach for future nanoelectronic devices. In order...
Charge transport characteristics of asymmetric :molecules containing a 9,9 '-spirobitluorene platfor...
Single molecule conductance of two spirobifluorene molecules of different length have been studied b...
A tetraphenylmethane tripod functionalized with three thiol moieties in the para position can serve ...
Controlling the orientation of molecular conductors on the electrode surfaces is a critical factor i...
This work compares single molecule conductance measurements of selected organic systems containing i...
This work compares single molecule conductance measurements of selected organic systems containing i...
As the field of molecular‐scale electronics matures and the prospect of devices incorporating molecu...
Controlling the orientation of molecular conductors on the electrode surfaces is a critical factor i...
Future applications of single-molecular and large-surface area molecular devices require a thorough ...
Future applications of single-molecular and large-surface area molecular devices require a thorough ...
Controlling the orientation of molecular conductors on the electrode surfaces is a critical factor i...
This article describes arylene–ethynylene molecular wires with 7 nm long backbones and thiolated ter...
This paper reports highly efficient coherent tunneling in single-molecule wires of oligo-ferrocenes ...
Single molecule-based devices represent the ultimate limit in device design, with promising applicat...
Molecular electronics is considered a promising approach for future nanoelectronic devices. In order...