Isotopic analysis is of paramount importance across the entire gamut of scientific research. To advance the frontiers of knowledge, a technique for nanoscale isotopic analysis is indispensable. Secondary Ion Mass Spectrometry (SIMS) is a well-established technique for analyzing isotopes, but its spatial-resolution is fundamentally limited. Transmission Electron Microscopy (TEM) is a well-known method for high-resolution imaging down to the atomic scale. However, isotopic analysis in TEM is not possible. Here, we introduce a powerful new paradigm for in-situ correlative microscopy called the Parallel Ion Electron Spectrometry by synergizing SIMS with TEM. We demonstrate this technique by distinguishing lithium carbonate nanoparticles accordi...
Stable isotopes are ideal labels for studying biological processes because they have little or no ef...
The chemical or elemental analysis of samples with complex surface topography is challenging for sec...
The ability to locate and quantify elemental distributions in plants is crucial to understanding pla...
Isotopic analysis is of paramount importance across the entire gamut of scientific research. To adva...
The NanoSIMS 50 combines unprecedented spatial resolution (as good as 50 nm) with ultra-high sensiti...
Secondary ion mass spectrometry (SIMS) has wide application for in situ geochronology, trace element...
The helium ion microscope (HIM) is a focussed ion beam instrument with unprecedented spatial resolut...
The performance of a new high resolution scanning ion microprobe (SIM) is elucidated with regard to ...
Primitive Solar System materials contain nm- to μm-sized presolar grains that formed in the winds of...
Extended abstract of a paper presented at Microscopy and Microanalysis 2012 in Phoenix, Arizona, USA...
Abstract There are growing demands for integrated study of isotopes, trace elements and crystallogra...
Investigating the detailed substructure of the cell is beyond the ability of conventional optical mi...
Investigating the detailed substructure of the cell is beyond the ability of conventional optical mi...
Soils are structurally heterogeneous across a wide range of spatio-temporal scales. Consequently, ex...
Considerably improved suppression of molecular ions in secondary ion mass spectrometry (SIMS) spectr...
Stable isotopes are ideal labels for studying biological processes because they have little or no ef...
The chemical or elemental analysis of samples with complex surface topography is challenging for sec...
The ability to locate and quantify elemental distributions in plants is crucial to understanding pla...
Isotopic analysis is of paramount importance across the entire gamut of scientific research. To adva...
The NanoSIMS 50 combines unprecedented spatial resolution (as good as 50 nm) with ultra-high sensiti...
Secondary ion mass spectrometry (SIMS) has wide application for in situ geochronology, trace element...
The helium ion microscope (HIM) is a focussed ion beam instrument with unprecedented spatial resolut...
The performance of a new high resolution scanning ion microprobe (SIM) is elucidated with regard to ...
Primitive Solar System materials contain nm- to μm-sized presolar grains that formed in the winds of...
Extended abstract of a paper presented at Microscopy and Microanalysis 2012 in Phoenix, Arizona, USA...
Abstract There are growing demands for integrated study of isotopes, trace elements and crystallogra...
Investigating the detailed substructure of the cell is beyond the ability of conventional optical mi...
Investigating the detailed substructure of the cell is beyond the ability of conventional optical mi...
Soils are structurally heterogeneous across a wide range of spatio-temporal scales. Consequently, ex...
Considerably improved suppression of molecular ions in secondary ion mass spectrometry (SIMS) spectr...
Stable isotopes are ideal labels for studying biological processes because they have little or no ef...
The chemical or elemental analysis of samples with complex surface topography is challenging for sec...
The ability to locate and quantify elemental distributions in plants is crucial to understanding pla...