Chemists control supramolecules using vapors
New study demonstrates vapor-controlled reversible binding between host–guest molecules induce macroscale optical and phase switching.
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New study demonstrates vapor-controlled reversible binding between host–guest molecules induce macroscale optical and phase switching.
A chip production method combines molecular materials with semiconductor manufacturing to build molecular memory and computing devices. Researchers at the Massachusetts Institute o...
In the realm of advanced materials science, metal-organic frameworks (MOFs) have garnered intense attention for their exceptional porosity and versatility. These hybrid materials,...
Free electrons offer chemists a new way to control reactions that conventional electron transfer rules would normally prevent. Inside a reaction flask, an electron can determine wh...
Relativity Rewrites the Rules of Chemical Bonding in Heavy Elements For decades, chemistry education has taught a clear division in the nature of triple bonds: one strong sigma bon...
For nearly a century, students have learned the inductive effect the same way. Now, researchers say that explanation may not tell the whole story. For decades, chemistry students h...
Study suggests a new method for tracking electronic and vibrational dynamics in real time. Within a few trillionths of a second after absorbing light, a molecule bends out of shape...
Researchers at Hebrew University report a simple chemical link that could help explain how early Earth chemistry transitioned toward cell-like organization. Their work shows that f...
An international team of chemists at Saarland University has shattered long-standing beliefs in inorganic chemistry by successfully synthesizing a novel ferrocenophane molecule fea...
Long polymer chains are among the hidden structures that shape the modern world. They give plastics their strength, help biological materials organize themselves, and form the mole...
A new fabrication platform integrates molecules into electronic devices, opening the door to emerging computing technologies.
A new paper provides clear, reproducible proof-of-concept for subtractive mechanosynthesis on silicon. It is not yet a complete minimal toolset”demonstration on diamond surfaces, b...
A new molecular design strategy is bringing two traditionally separate worlds of chemistry together: proteins, nature’s highly evolved molecular machines, and foldamers, synthetic...
Researchers designed an end-to-end workflow from molecular design to blue OLED device fabrication and evaluation.
For decades, the pursuit of purer colors in organic light-emitting diodes has followed a seemingly straightforward rule: make the molecules as rigid and planar as possible, then pr...
Synchronized infrared lasers steer molecules between structures, exposing clear spectral fingerprints and new ways to study chemical reactions.
Discover how molecular imprinting enables selective electrochemical sensors for next-generation chemical detection The post Advances in molecularly imprinted polymers for electroch...
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Fuel cells promise a cleaner path to large-scale energy conversion, but cathode performance is still held back by sluggish oxygen reduction reaction (ORR) kinetics. Platinum cataly...
Artificial foldamers bind proteins with high precision, enabling rings, networks and porous architectures that could serve as building blocks for new materials.
In the quest for faster and more efficient drug discovery, researchers have uncovered a novel method to enhance molecular complexity using a surprisingly straightforward tool: blue...
New research shows that chemical reactions in an ultracold quantum gas can generate entanglement and transfer phase information from atoms to molecules The post Quantum effects in...
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