Investigation of mechanical properties of single molecule junctions is crucial to develop an understanding and enable control of single molecular junctions. This work presents an experimental and analytical approach that enables the statistical evaluation of force and simultaneous conductance data of metallic atomic point contacts and molecular junctions. A conductive atomic force microscope based break junction technique is developed to form single molecular junctions and collect conductance and force data simultaneously. Improvements of the optical components have been achieved through the use of a super luminescent diode, enabling tremendous increases in force resolution. An experimental procedure to collect data for various molecular ju...
We show statistical measurements of single molecule-metal contacts using the mechanically controllab...
We show statistical measurements of single molecule-metal contacts using the mechanically controllab...
The growth of the field of molecular electronics from initial theoretical proposals for molecule-bas...
The physical properties of materials at the nanoscale are controlled to a large extent by their inte...
In an effort to further understand electronic and thermoelectric phenomenon at the nanometer scale, ...
Abstract Measurement of electronics and mechanics of single molecules provides a fundamental underst...
abstract: Studying charge transport through single molecules tethered between two metal electrodes i...
This Thesis addresses the fundamental problem of controlling transport through a metal-organic inter...
In an effort to further understand electronic and thermoelectric phenomenon at the nanometer scale, ...
This Thesis addresses the fundamental problem of controlling transport through a metal-organic inter...
Simultaneous measurement [1] of junction conductance and sustained force in single molecule junction...
ConspectusOver the past 10 years, there has been tremendous progress in the measurement, modeling an...
ABSTRACT: We use a modified conducting atomic force microscope to simultaneously probe the conductan...
We use a modified conducting atomic force microscope to simultaneously probe the conductance of a si...
In the last twenty years, new sophisticated tools to contact single molecules were developed. Howeve...
We show statistical measurements of single molecule-metal contacts using the mechanically controllab...
We show statistical measurements of single molecule-metal contacts using the mechanically controllab...
The growth of the field of molecular electronics from initial theoretical proposals for molecule-bas...
The physical properties of materials at the nanoscale are controlled to a large extent by their inte...
In an effort to further understand electronic and thermoelectric phenomenon at the nanometer scale, ...
Abstract Measurement of electronics and mechanics of single molecules provides a fundamental underst...
abstract: Studying charge transport through single molecules tethered between two metal electrodes i...
This Thesis addresses the fundamental problem of controlling transport through a metal-organic inter...
In an effort to further understand electronic and thermoelectric phenomenon at the nanometer scale, ...
This Thesis addresses the fundamental problem of controlling transport through a metal-organic inter...
Simultaneous measurement [1] of junction conductance and sustained force in single molecule junction...
ConspectusOver the past 10 years, there has been tremendous progress in the measurement, modeling an...
ABSTRACT: We use a modified conducting atomic force microscope to simultaneously probe the conductan...
We use a modified conducting atomic force microscope to simultaneously probe the conductance of a si...
In the last twenty years, new sophisticated tools to contact single molecules were developed. Howeve...
We show statistical measurements of single molecule-metal contacts using the mechanically controllab...
We show statistical measurements of single molecule-metal contacts using the mechanically controllab...
The growth of the field of molecular electronics from initial theoretical proposals for molecule-bas...