Ion beam analysis has for decades been used as a tool for geochemical analysis of trace elements using both X-rays (particle induced X-ray emission) and nuclear reaction analysis. With the geoanalytical setup at the Lund Ion Beam Analysis Facility, the boron content in geological samples with a spatial resolution of 1 µm is determined through nuclear reaction analysis. In the newly upgraded setup, a single detector has been replaced by a double sided silicon strip detector with 2048 segments. After optimization, boron content in geological samples as low as 1 µg g−1 can be measured
A static double-collector system for accurate, precise, and rapid boron isotope analysis has been es...
Boron Neutron Capture Therapy (BNCT) is based on the ability of the stable isotope 10B to capture ne...
Measurement of boron concentration in biological tissues is a fundamental aspect of boron neutron ca...
Ion beam analysis has for decades been used as a tool for geochemical analysis of trace elements usi...
AbstractInterest in high spatial resolution boron analyses from a geochemical perspective is related...
Interest in high spatial resolution boron analyses from a geochemical perspective is related to the ...
Neste trabalho, estudamos e aplicamos técnicas analíticas com feixes iônicos para a identificação e ...
CAS-BIASAmong other trace elements, boron assessment in soils is important for assessing land qualit...
Eighteen international reference standards, mostly geochemical standards, have been analysed for bor...
There is a great need to quantify sub-ppm levels of boron in bulk silicon. There are several methods...
The unambiguity with which some nuclear reactions may be identified often permits their use as highl...
Over the last twenty years applications of the boron isotope system have expanded from the analysis ...
Quantification and mapping possibilities of lithium in geological material, by Nuclear Reaction Anal...
Boron Neutron Capture Therapy (BNCT) is based on the ability of the stable isotope 10B to capture ne...
The high geochemical reactivity of boron and the large relative mass difference between B-10 and B-1...
A static double-collector system for accurate, precise, and rapid boron isotope analysis has been es...
Boron Neutron Capture Therapy (BNCT) is based on the ability of the stable isotope 10B to capture ne...
Measurement of boron concentration in biological tissues is a fundamental aspect of boron neutron ca...
Ion beam analysis has for decades been used as a tool for geochemical analysis of trace elements usi...
AbstractInterest in high spatial resolution boron analyses from a geochemical perspective is related...
Interest in high spatial resolution boron analyses from a geochemical perspective is related to the ...
Neste trabalho, estudamos e aplicamos técnicas analíticas com feixes iônicos para a identificação e ...
CAS-BIASAmong other trace elements, boron assessment in soils is important for assessing land qualit...
Eighteen international reference standards, mostly geochemical standards, have been analysed for bor...
There is a great need to quantify sub-ppm levels of boron in bulk silicon. There are several methods...
The unambiguity with which some nuclear reactions may be identified often permits their use as highl...
Over the last twenty years applications of the boron isotope system have expanded from the analysis ...
Quantification and mapping possibilities of lithium in geological material, by Nuclear Reaction Anal...
Boron Neutron Capture Therapy (BNCT) is based on the ability of the stable isotope 10B to capture ne...
The high geochemical reactivity of boron and the large relative mass difference between B-10 and B-1...
A static double-collector system for accurate, precise, and rapid boron isotope analysis has been es...
Boron Neutron Capture Therapy (BNCT) is based on the ability of the stable isotope 10B to capture ne...
Measurement of boron concentration in biological tissues is a fundamental aspect of boron neutron ca...