The energy level alignment after the formation of a molecular tunnel junction is often poorly understood because spectroscopy inside junctions is not possible, which hampers the rational design of functional molecular junctions and complicates the interpretation of the data generated by molecular junctions. In molecular junction platforms where the top electrode molecule interaction is weak; one may argue that the energy level alignment can be deduced from measurements with the molecules supported by the bottom electrode sometimes referred to as half junctions . This approach, however, still relies on a series of assumptions, which are challenging to address experimentally due to difficulties in studying the molecule top electrode intera...
Understanding and controlling the orbital alignment of molecules placed between electrodes is essent...
peer-reviewedA challenge in molecular electronics is to control the strength of the molecule–electro...
Using photoemission spectroscopy, we determine the relationship between electronic energy level alig...
The energy level alignment after the formation of a molecular tunnel junction is often poorly unders...
The energy level alignment after the formation of a molecular tunnel junction is often poorly unders...
Single molecule-based devices represent the ultimate limit in device design, with promising applicat...
Achieving highly transmitting molecular junctions through resonant transport at low bias is key to t...
The energetics of metal/molecular semiconductor interfaces plays a fundamental role in organic elect...
This paper describes a simple model for comparing the degree of electronic coupling between molecule...
Control over the energy level alignment in molecular junctions is notoriously difficult, making it c...
The molecule/metal interface is the key element in charge injection devices. It can be generally def...
Large-area tunneling junctions using eutectic Ga-In (EGaIn) as a top contact have proven to be a rob...
The energy-level alignment of molecular transistors can be controlled by external gating to move mol...
Using photoemission spectroscopy, we determine the relationship between electronic energy level alig...
In this thesis I present a systematic discussion of large-area tunneling molecular junctions compris...
Understanding and controlling the orbital alignment of molecules placed between electrodes is essent...
peer-reviewedA challenge in molecular electronics is to control the strength of the molecule–electro...
Using photoemission spectroscopy, we determine the relationship between electronic energy level alig...
The energy level alignment after the formation of a molecular tunnel junction is often poorly unders...
The energy level alignment after the formation of a molecular tunnel junction is often poorly unders...
Single molecule-based devices represent the ultimate limit in device design, with promising applicat...
Achieving highly transmitting molecular junctions through resonant transport at low bias is key to t...
The energetics of metal/molecular semiconductor interfaces plays a fundamental role in organic elect...
This paper describes a simple model for comparing the degree of electronic coupling between molecule...
Control over the energy level alignment in molecular junctions is notoriously difficult, making it c...
The molecule/metal interface is the key element in charge injection devices. It can be generally def...
Large-area tunneling junctions using eutectic Ga-In (EGaIn) as a top contact have proven to be a rob...
The energy-level alignment of molecular transistors can be controlled by external gating to move mol...
Using photoemission spectroscopy, we determine the relationship between electronic energy level alig...
In this thesis I present a systematic discussion of large-area tunneling molecular junctions compris...
Understanding and controlling the orbital alignment of molecules placed between electrodes is essent...
peer-reviewedA challenge in molecular electronics is to control the strength of the molecule–electro...
Using photoemission spectroscopy, we determine the relationship between electronic energy level alig...