We present a study of the reactions of the meteoritic mineral schreibersite (Fe,Ni)3P, focusing primarily on surface chemistry and prebiotic phosphorylation. In this work, a synthetic analogue of the mineral was synthesized by mixing stoichiometric proportions of elemental iron, nickel and phosphorus and heating in a tube furnace at 820 °C for approximately 235 hours under argon or under vacuum, a modification of the method of Skála and Drábek (2002). Once synthesized, the schreibersite was characterized to confirm the identity of the product as well as to elucidate the oxidation processes affecting the surface. In addition to characterization of the solid product, this schreibersite was reacted with water or with organic solutes in a choli...
In-fall of extraterrestrial material including meteorites and interstellar dust particles during the...
Phosphorylated compounds (e.g., DNA, RNA, phospholipids, and many coenzymes) are critical to biochem...
Phosphorylated compounds (e.g., DNA, RNA, phospholipids, and many coenzymes) are critical to biochem...
We present a study of the reactions of the meteoritic mineral schreibersite (Fe,Ni)3P, focusing prim...
We present a study of the reactions of the meteoritic mineral schreibersite (Fe,Ni)3P, focusing prim...
We present a study of the reactions of the meteoritic mineral schreibersite (Fe,Ni)3P, focusing prim...
We present study of the synthesis and reactions of an analog of the meteoritic mineral schreibersite...
We present study of the synthesis and reactions of an analog of the meteoritic mineral schreibersite...
AbstractThe mineral schreibersite, (Fe,Ni)3P, provides a reactive source of phosphorus capable of fo...
The mineral schreibersite, (Fe,Ni)3P, provides a reactive source of phosphorus capable of forming ph...
The mineral schreibersite, (Fe,Ni)3P, provides a reactive source of phosphorus capable of forming ph...
The mineral schreibersite, (Fe,Ni)3P, provides a reactive source of phosphorus capable of forming ph...
The mineral schreibersite, (Fe,Ni)3P, provides a reactive source of phosphorus capable of forming ph...
The ubiquity of phosphorus (P) in modern biochemistry suggests that P may have participated in prebi...
The mineral schreibersite, (Fe,Ni)(3)P, a ubiquitous component of iron meteorites. is known to under...
In-fall of extraterrestrial material including meteorites and interstellar dust particles during the...
Phosphorylated compounds (e.g., DNA, RNA, phospholipids, and many coenzymes) are critical to biochem...
Phosphorylated compounds (e.g., DNA, RNA, phospholipids, and many coenzymes) are critical to biochem...
We present a study of the reactions of the meteoritic mineral schreibersite (Fe,Ni)3P, focusing prim...
We present a study of the reactions of the meteoritic mineral schreibersite (Fe,Ni)3P, focusing prim...
We present a study of the reactions of the meteoritic mineral schreibersite (Fe,Ni)3P, focusing prim...
We present study of the synthesis and reactions of an analog of the meteoritic mineral schreibersite...
We present study of the synthesis and reactions of an analog of the meteoritic mineral schreibersite...
AbstractThe mineral schreibersite, (Fe,Ni)3P, provides a reactive source of phosphorus capable of fo...
The mineral schreibersite, (Fe,Ni)3P, provides a reactive source of phosphorus capable of forming ph...
The mineral schreibersite, (Fe,Ni)3P, provides a reactive source of phosphorus capable of forming ph...
The mineral schreibersite, (Fe,Ni)3P, provides a reactive source of phosphorus capable of forming ph...
The mineral schreibersite, (Fe,Ni)3P, provides a reactive source of phosphorus capable of forming ph...
The ubiquity of phosphorus (P) in modern biochemistry suggests that P may have participated in prebi...
The mineral schreibersite, (Fe,Ni)(3)P, a ubiquitous component of iron meteorites. is known to under...
In-fall of extraterrestrial material including meteorites and interstellar dust particles during the...
Phosphorylated compounds (e.g., DNA, RNA, phospholipids, and many coenzymes) are critical to biochem...
Phosphorylated compounds (e.g., DNA, RNA, phospholipids, and many coenzymes) are critical to biochem...