Controlled manipulation of single molecules is an important step towards the fabrication of single molecule devices and nanoscale molecular machines. Currently, scanning probe microscopy (SPM) is the only technique that facilitates direct imaging and manipulations of nanometer-sized molecular compounds on surfaces. The technique of hand-controlled manipulation (HCM) introduced recently in Beilstein J. Nanotechnol. 2014, 5, 1926–1932 simplifies the identification of successful manipulation protocols in situations when the interaction pattern of the manipulated molecule with its environment is not fully known. Here we present a further technical development that substantially improves the effectiveness of HCM. By adding Oculus Rift virtual re...
Virtual reality (VR) is a computer technology with a wide range of applications. VR is particularly ...
During the last decade, great advances have been made concerning the construction and manipulation o...
The main problem of atomic force microscopy (AFM)-based nanomanipulation is the lack of real-time vi...
One of the paramount goals in nanotechnology is molecular-scale functional design, which includes ar...
A new way to control individual molecules and monoatomic chains is devised by preparing a human–mach...
Visualization of molecular models is a vital part in modern drug design. Im-proved visualization met...
DNA electronics circuits require an efficient way to accurately position and individually manipulate...
A bold vision in nanofabrication is the assembly of functional molecular structures using a scanning...
Molecular electronics saw its birth with the idea to build electronic circuitry with single molecule...
International audienceToday, Scanning Probe Microscopies (SPM) are widely used in physics, chemistry...
Atomic Force Microscope (AFM) has been used as a manipulation tool for a decade. The problem of lack...
For more than three centuries we have been watching and studying microscopic phenomena behind a micr...
This chapter introduces nanomanipulation using atomic force microscope (AFM)-based augmented reality...
Atomic force microscopy (AFM) has become a promising tool for not only imaging and measuring matter ...
International audienceThis paper presents a novel tool for the analysis of new molecular structures ...
Virtual reality (VR) is a computer technology with a wide range of applications. VR is particularly ...
During the last decade, great advances have been made concerning the construction and manipulation o...
The main problem of atomic force microscopy (AFM)-based nanomanipulation is the lack of real-time vi...
One of the paramount goals in nanotechnology is molecular-scale functional design, which includes ar...
A new way to control individual molecules and monoatomic chains is devised by preparing a human–mach...
Visualization of molecular models is a vital part in modern drug design. Im-proved visualization met...
DNA electronics circuits require an efficient way to accurately position and individually manipulate...
A bold vision in nanofabrication is the assembly of functional molecular structures using a scanning...
Molecular electronics saw its birth with the idea to build electronic circuitry with single molecule...
International audienceToday, Scanning Probe Microscopies (SPM) are widely used in physics, chemistry...
Atomic Force Microscope (AFM) has been used as a manipulation tool for a decade. The problem of lack...
For more than three centuries we have been watching and studying microscopic phenomena behind a micr...
This chapter introduces nanomanipulation using atomic force microscope (AFM)-based augmented reality...
Atomic force microscopy (AFM) has become a promising tool for not only imaging and measuring matter ...
International audienceThis paper presents a novel tool for the analysis of new molecular structures ...
Virtual reality (VR) is a computer technology with a wide range of applications. VR is particularly ...
During the last decade, great advances have been made concerning the construction and manipulation o...
The main problem of atomic force microscopy (AFM)-based nanomanipulation is the lack of real-time vi...