[astro-ph.GA] Thioacetaldehyde (CH3CHS), recently detected in TMC-1, has an abundance approximately 36 times lower than its oxygen analog, acetaldehyde (CH3CHO). This makes the CH3CHS/CH3CHO pair the one with the largest […]
Biophysics
Interstellar Disparity: N- vs O-bearing Molecules: A Multidisciplinary Perspective across Interstellar Environments
[astro-ph.GA] Observations of O- and N-bearing molecules reveal systematic chemical differentiation across a wide range of interstellar environments.
Computational Modeling Of An RNA-peptide World
[biorxiv.org] Emergence and evolution of functional RNA and protein structures are the central problems for understanding the origin of life.
On-demand Microfluidic Synthesis Of Silver Nanoparticles For SERS Detection Of Organic Compounds: A Preliminary Feasibility Study For Astrobiology Applications
[Spectrochimica Acta Part A] The detection of organic molecules at trace concentration levels remains a critical challenge for astrobiology research.
Mystery Surrounding The Formation Of Asteroid Bennu Solved
[ETH Zurich] The asteroid Bennu orbits the Sun once every 1.2 years and approaches Earth every six years, passing within around 300,000 kilometres. NASA took advantage of this to collect […]
Tricorder Tech: What A Spacefaring Arctic Microbe Reveals About Life in Alien Oceans
[ISS National Laboratory] It lives in places where life should not exist. In the brine channels that thread through Arctic sea ice, it survives temperatures that would freeze most bacteria […]
Hot Spring Organism Breaks Record For Heat Tolerance Of Complex Life
[Cell Press] A tiny, single-celled organism can thrive at temperatures that would kill all other known complex life.
Rotational Spectroscopy And Astronomical Search Of Propane-1-thiol (CH3CH2CH2SH) And Propane-2-thiol ((CH3)2CHSH)
[astro-ph.GA] This study focuses on propanethiol (or propyl mercaptan, C3H7SH), a sulfur analogue of propanol and a key target for investigating interstellar sulfur chemistry. We report the laboratory rotational spectroscopic […]
New Study Pinpoints When Early Earth May Have Become Ready for Life’s Chemistry
[PSI] Conditions on the early Earth may have become stable enough to sustain the chemistry associated with the origins of life around 4.33 billion years ago, according to new research […]
Prebiotic Peptide Formation Triggered By Urea-rich Warm Little Ponds On Early Earth
[Bioorganic Chemistry]. In the study of the origin of life, the polymerization of amino acids into peptides in water faces significant thermodynamic barriers, often referred to as the “water problem.”
