We designed and conducted a series of primordial‐soup Miller‐Urey style experiments with deuterated gases and reagents to compare the spark‐discharge products of a “deuterated world” with the standard reaction in the “hydrogenated world”. While the deuteration of the system has little effect on the distribution of amino acid products, significant differences are seen in other regions of the product‐space. Not only do we observe about 120 new species, we also see significant differences in their distribution if the two hydrogen isotope worlds are compared. Several isotopologue matches can be identified in both, but a large proportion of products have no equivalent in the corresponding isotope world with ca. 43 new species in the D world and ca. 39 new species in the H world. This shows that isotopic exchange (the addition of only one neutron) may lead to significant additional complexity in chemical space under otherwise identical reaction conditions.
We designed and conducted as eries of primordialsoup Miller-Urey style experiments with deuterated gases and reagents to compare the spark-discharge products of a" deuterated world" with the standardreaction in the "hydrogenated world". While the deuteration of the system has little effect on the distribution of amino acid products,significant differences are seen in other regions of the product-space.Not only do we observe about 120 new species,w ea lso see significant differences in their distribution if the two hydrogen isotope worlds are compared. Several isotopologue matches can be identified in both, but alarge proportion of products have no equivalent in the corresponding isotope world with ca. 43 new species in the Dworld and ca. 39 new species in the Hworld. This shows that isotopic exchange (the addition of only one neutron) may lead to significant additional complexity in chemical space under otherwise identical reaction conditions.
Ein reines Cobalt‐Keggin‐Gerüst mit W‐O‐Co‐Wechselwirkungen wurde mit einem reinen Mangan‐Keggin‐Gerüst mit W‐O‐Mn‐Wechselwirkungen „legiert“. Die isostrukturellen Legierungen sind feste Lösungen der Co‐ und Mn‐Netze. Eine Reihe einkristalliner gemischter Gerüste mit neuartigen Redoxeigenschaften wurde durch Mischen der Komponenten jedes einzelnen Übergangsmetallgerüsts im entsprechenden stöchiometrischen Verhältnis erhalten.
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