Life as Controlled Rust: A Theory of Oxidized Carbon Membranes

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Main Author: Konno, Tetsuo
Format: Recurso digital
Language:English
Published: Zenodo 2025
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author Konno, Tetsuo
author_facet Konno, Tetsuo
contents <p>This paper proposes a novel theory that redefines life as a self-expanding oxidized carbon membrane—a structural phenomenon analogous to rust, but occurring in hydrocarbons. Originating from hydrocarbon films adsorbed on submerged mineral surfaces, these membranes evolve through partial oxidation, phosphorylation, and sulfur bridging. The resulting structures are stabilized by sulfur (S), phosphorus (P), and nitrogen (N), enabling them to maintain an intermediate oxidation state between fully reduced hydrocarbons and fully oxidized carbon dioxide. Life, in this view, emerges not from genetic information but from the dynamic stabilization of oxidized matter, offering a new framework for prebiotic chemistry, biomimetic engineering, and astrobiology.</p> <p>Author : Tetsuo Konno(今野哲夫)</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_15711528
institution Zenodo
language eng
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle Life as Controlled Rust: A Theory of Oxidized Carbon Membranes
Konno, Tetsuo
Origin of life
oxidized carbon membrane
hydrocarbon film
prebiotic chemistry
sulfur bridging, phosphorus polarity
nitrogen reactivity
redox gradient
self-expanding structure
organic rust
biogenic window, non-equilibrium systems
abiotic membrane formation
astrobiology
chemical evolution
<p>This paper proposes a novel theory that redefines life as a self-expanding oxidized carbon membrane—a structural phenomenon analogous to rust, but occurring in hydrocarbons. Originating from hydrocarbon films adsorbed on submerged mineral surfaces, these membranes evolve through partial oxidation, phosphorylation, and sulfur bridging. The resulting structures are stabilized by sulfur (S), phosphorus (P), and nitrogen (N), enabling them to maintain an intermediate oxidation state between fully reduced hydrocarbons and fully oxidized carbon dioxide. Life, in this view, emerges not from genetic information but from the dynamic stabilization of oxidized matter, offering a new framework for prebiotic chemistry, biomimetic engineering, and astrobiology.</p> <p>Author : Tetsuo Konno(今野哲夫)</p>
title Life as Controlled Rust: A Theory of Oxidized Carbon Membranes
topic Origin of life
oxidized carbon membrane
hydrocarbon film
prebiotic chemistry
sulfur bridging, phosphorus polarity
nitrogen reactivity
redox gradient
self-expanding structure
organic rust
biogenic window, non-equilibrium systems
abiotic membrane formation
astrobiology
chemical evolution
url https://doi.org/10.5281/zenodo.15711528