Carbonaceous chondrites (CC) preserve a diverse range of organic matter formed within cold interstellar environments, the solar nebula, and during subsequent parent body asteroidal processing. This organic matter maintains a unique geochemical and istopic record of organic evolution [1-4]. Bulk studies of organics within CC have revealed a complex array of organic species. However, bulk studies invariably involve solvent extraction, resulting in a loss of spatial context of the host mineral matrix [3, 5]. Correlated in situ chemical and isotopic studies suggest preservation of interstellar organics in the form of spherical, often hollow, micrometer sized organic nano-globules. Nanoglobules often exhibit significant delta 15N and delta D enr...
Primitive meteorites and interplanetary dust particles (IDPs) contain remants of interstellar organi...
Previous studies have identified iso-topic hotspots in insoluble organic matter (IOM) from carbonace...
The insoluble organic matter (IOM) is known to be enriched in deuterium in carbonaceous chondrites (...
Microanalytical studies of carbonaceous chondrites (CCs) have identified a vast array of isotopicall...
Chondritic meteorites represent some of the most primitive Solar System materials available for labo...
Primitive carbonaceous chondrites contain a wide variety of organic material, ranging from soluble d...
Insoluble organic matter (IOM), the main organic constituent in chondrites, has been extensively stu...
Insoluble organic matter (IOM), the main organic constituent in chondrites, has been extensively stu...
Organic materials isolated from carbonaceous meteorites provide us with a record of pre-biotic chemi...
Sub-micron, hollow organic globules reported from several carbonaceous chondrites, interplanetary du...
The carbonaceous chondrite meteorites contain a record of the formation of the solar system, part of...
Several abiotic chemical processes acting in several different astrophysical and cosmogonic environm...
Organic matter exists in comets (most notably in 81P/Wild 2 [Stardust], 67P/Churyomov- Gerasimenko (...
We have acquired NanoSIMS images of the matrices of CI, CM, and CR carbonaceous chondrites to study,...
We have acquired NanoSIMS images of the matrices of CI, CM, and CR carbonaceous chondrites to study,...
Primitive meteorites and interplanetary dust particles (IDPs) contain remants of interstellar organi...
Previous studies have identified iso-topic hotspots in insoluble organic matter (IOM) from carbonace...
The insoluble organic matter (IOM) is known to be enriched in deuterium in carbonaceous chondrites (...
Microanalytical studies of carbonaceous chondrites (CCs) have identified a vast array of isotopicall...
Chondritic meteorites represent some of the most primitive Solar System materials available for labo...
Primitive carbonaceous chondrites contain a wide variety of organic material, ranging from soluble d...
Insoluble organic matter (IOM), the main organic constituent in chondrites, has been extensively stu...
Insoluble organic matter (IOM), the main organic constituent in chondrites, has been extensively stu...
Organic materials isolated from carbonaceous meteorites provide us with a record of pre-biotic chemi...
Sub-micron, hollow organic globules reported from several carbonaceous chondrites, interplanetary du...
The carbonaceous chondrite meteorites contain a record of the formation of the solar system, part of...
Several abiotic chemical processes acting in several different astrophysical and cosmogonic environm...
Organic matter exists in comets (most notably in 81P/Wild 2 [Stardust], 67P/Churyomov- Gerasimenko (...
We have acquired NanoSIMS images of the matrices of CI, CM, and CR carbonaceous chondrites to study,...
We have acquired NanoSIMS images of the matrices of CI, CM, and CR carbonaceous chondrites to study,...
Primitive meteorites and interplanetary dust particles (IDPs) contain remants of interstellar organi...
Previous studies have identified iso-topic hotspots in insoluble organic matter (IOM) from carbonace...
The insoluble organic matter (IOM) is known to be enriched in deuterium in carbonaceous chondrites (...