rystalline nanoporous molecular networks are assembled on the Ag(111) surface, where the pores confine electrons originating from the surface state of the metal. Depending on the pore sizes and their coupling, an antibonding level is shifted upward by 0.1–0.3 eV as measured by scanning tunneling microscopy. On molecular sites, a downshifted bonding state is observed, which is occupied under equilibrium conditions. Low-temperature force spectroscopy reveals energy dissipation peaks and jumps of frequency shifts at bias voltages, which are related to the confined states. The dissipation maps show delocalization on the supramolecular assembly and a weak distance dependence of the dissipation peaks. These observations indicate that two-dimensio...
Quantum dot arrays in the form of molecular nanoporous networks are renowned for modifying the elect...
Quantum dot arrays in the form of molecular nanoporous networks are renowned for modifying the elect...
On-surface metal-organic nanoporous networks generally refer to adatom coordinated molecular arrays,...
Crystalline nanoporous molecular networks are assembled on the Ag(111) surface, where the pores conf...
Crystalline nanoporous molecular networks are assembled on the Ag(111) surface, where the pores conf...
Quantum dot arrays in the form of molecular nanoporous networks are renowned for modifying the elect...
Two-dimensional honeycomb molecular networks confine a substrate’s surface electrons within their po...
The properties of crystalline solids can to a large extent be derived from the scale and dimensional...
The properties of crystalline solids can to a large extent be derived from the scale and dimensional...
Two-dimensional organic and metal-organic nanoporous networks can scatter surface electrons, leading...
The properties of crystalline solids can to a large extent be derived from the scale and dimensional...
Two-dimensional organic and metal-organic nanoporous networks can scatter surface electrons, leading...
Quantum dot arrays in the form of molecular nanoporous networks are renowned for modifying the elect...
Quantum dot arrays in the form of molecular nanoporous networks are renowned for modifying the elect...
Quantum dot arrays in the form of molecular nanoporous networks are renowned for modifying the elect...
Quantum dot arrays in the form of molecular nanoporous networks are renowned for modifying the elect...
Quantum dot arrays in the form of molecular nanoporous networks are renowned for modifying the elect...
On-surface metal-organic nanoporous networks generally refer to adatom coordinated molecular arrays,...
Crystalline nanoporous molecular networks are assembled on the Ag(111) surface, where the pores conf...
Crystalline nanoporous molecular networks are assembled on the Ag(111) surface, where the pores conf...
Quantum dot arrays in the form of molecular nanoporous networks are renowned for modifying the elect...
Two-dimensional honeycomb molecular networks confine a substrate’s surface electrons within their po...
The properties of crystalline solids can to a large extent be derived from the scale and dimensional...
The properties of crystalline solids can to a large extent be derived from the scale and dimensional...
Two-dimensional organic and metal-organic nanoporous networks can scatter surface electrons, leading...
The properties of crystalline solids can to a large extent be derived from the scale and dimensional...
Two-dimensional organic and metal-organic nanoporous networks can scatter surface electrons, leading...
Quantum dot arrays in the form of molecular nanoporous networks are renowned for modifying the elect...
Quantum dot arrays in the form of molecular nanoporous networks are renowned for modifying the elect...
Quantum dot arrays in the form of molecular nanoporous networks are renowned for modifying the elect...
Quantum dot arrays in the form of molecular nanoporous networks are renowned for modifying the elect...
Quantum dot arrays in the form of molecular nanoporous networks are renowned for modifying the elect...
On-surface metal-organic nanoporous networks generally refer to adatom coordinated molecular arrays,...