In this paper we analyze the reliability of atomically thin hexagonal boron nitride (A-BN) dielectric stacks subjected to electrical stresses. The 2D insulating stacks are grown by chemical vapor deposition, meaning that (unlike exfoliated nanosheets) they can cover large areas and are suitable for the fabrication of scalable devices using photolithography tools. By comparing HfO2 and A-BN stacks with similar equivalent oxide thickness we find that the 2D dielectric shows a striking stable conduction when subjected to sequences of ramped voltage stresses, indicating that it is much more stable versus electrical-field-induced defects. These results point A-BN as superb dielectric for electronic devices
Dielectrics are insulating materials used in many different electronic devices (e.g. capacitors, tra...
Two-dimensional (2D) hexagonal boron nitride (BN) nanosheets are excellent dielectric substrate for ...
Dielectric breakdown in 2D insulating films for future logic device technology is not well understoo...
In this paper we analyze the reliability of atomically thin hexagonal boron nitride (A-BN) dielectri...
In this paper we analyze the reliability of atomically thin hexagonal boron nitride (A-BN) dielectri...
In this paper we analyze the reliability of atomically thin hexagonal boron nitride (A-BN) dielectri...
Boron Nitride (BN) is a two dimensional insulator with excellent chemical, thermal, mechanical, and ...
Boron Nitride (BN) is a two dimensional insulator with excellent chemical, thermal, mechanical, and ...
Hexagonal boron nitride (BN) is widely used as a substrate and gate insulator for two-dimensional (2...
Two dimensional (2D) boron nitride (h-BN) nanosheets are well known as their tunable electric proper...
Two dimensional (2D) boron nitride (h-BN) nanosheets are well known as their tunable electric proper...
Two dimensional (2D) boron nitride (h-BN) nanosheets are well known as their tunable electric proper...
Recent advances in materials science allowed the incorporation of advanced two dimensional (2D) mate...
Insulating films are essential in multiple electronic devices because they can provide essential fun...
Dielectrics are insulating materials used in many different electronic devices (e.g. capacitors, tra...
Dielectrics are insulating materials used in many different electronic devices (e.g. capacitors, tra...
Two-dimensional (2D) hexagonal boron nitride (BN) nanosheets are excellent dielectric substrate for ...
Dielectric breakdown in 2D insulating films for future logic device technology is not well understoo...
In this paper we analyze the reliability of atomically thin hexagonal boron nitride (A-BN) dielectri...
In this paper we analyze the reliability of atomically thin hexagonal boron nitride (A-BN) dielectri...
In this paper we analyze the reliability of atomically thin hexagonal boron nitride (A-BN) dielectri...
Boron Nitride (BN) is a two dimensional insulator with excellent chemical, thermal, mechanical, and ...
Boron Nitride (BN) is a two dimensional insulator with excellent chemical, thermal, mechanical, and ...
Hexagonal boron nitride (BN) is widely used as a substrate and gate insulator for two-dimensional (2...
Two dimensional (2D) boron nitride (h-BN) nanosheets are well known as their tunable electric proper...
Two dimensional (2D) boron nitride (h-BN) nanosheets are well known as their tunable electric proper...
Two dimensional (2D) boron nitride (h-BN) nanosheets are well known as their tunable electric proper...
Recent advances in materials science allowed the incorporation of advanced two dimensional (2D) mate...
Insulating films are essential in multiple electronic devices because they can provide essential fun...
Dielectrics are insulating materials used in many different electronic devices (e.g. capacitors, tra...
Dielectrics are insulating materials used in many different electronic devices (e.g. capacitors, tra...
Two-dimensional (2D) hexagonal boron nitride (BN) nanosheets are excellent dielectric substrate for ...
Dielectric breakdown in 2D insulating films for future logic device technology is not well understoo...