Isothiourea catalyzed atroposelective silyl protection of 1,1′-biaryl-2,6-diols via sequential desymmetrization and kinetic resolution doi.org/10.1016/j.cc...
Chinese Chemical Letters
@chinchemlett.bsky.social
A leading chemistry journal by Chinese Chemical Society and Elsevier @elsevierconnect.bsky.social, covering the whole field of chemistry. IF = 9.5 (2025). Posted by @zhichangliu.bsky.social on behalf of the editorial office. t.co/XTvPAyP30M
Multiscale Tendon–Mimetic Hydrogel Structures Via the Cascading Synergy of Chemical Microphase Separation and Mechanical Twisting–Weaving
Multiscale Tendon–Mimetic Hydrogel Structures Via the Cascading Synergy of Chemical Microphase Separation and Mechanical Twisting–Weaving doi.org/10.1002/smm2...
Sequential recognition of hydrogen polysulfides and formaldehyde via a cascade-activated two-photon probe for early-stage stroke imaging doi.org/10.1016/j.cc...
Multiscale Tendon–Mimetic Hydrogel Structures Via the Cascading Synergy of Chemical Microphase Separation and Mechanical Twisting–Weaving
Multiscale Tendon–Mimetic Hydrogel Structures Via the Cascading Synergy of Chemical Microphase Separation and Mechanical Twisting–Weaving doi.org/10.1002/smm2...
Multiscale Tendon–Mimetic Hydrogel Structures Via the Cascading Synergy of Chemical Microphase Separation and Mechanical Twisting–Weaving
Multiscale Tendon–Mimetic Hydrogel Structures Via the Cascading Synergy of Chemical Microphase Separation and Mechanical Twisting–Weaving doi.org/10.1002/smm2...
Multiscale Tendon–Mimetic Hydrogel Structures Via the Cascading Synergy of Chemical Microphase Separation and Mechanical Twisting–Weaving doi.org/10.1002/smm2...
Sequential recognition of hydrogen polysulfides and formaldehyde via a cascade-activated two-photon probe for early-stage stroke imaging
Sequential recognition of hydrogen polysulfides and formaldehyde via a cascade-activated two-photon probe for early-stage stroke imaging doi.org/10.1016/j.cc...
Sequential recognition of hydrogen polysulfides and formaldehyde via a cascade-activated two-photon probe for early-stage stroke imaging
Sequential recognition of hydrogen polysulfides and formaldehyde via a cascade-activated two-photon probe for early-stage stroke imaging doi.org/10.1016/j.cc...
Sequential recognition of hydrogen polysulfides and formaldehyde via a cascade-activated two-photon probe for early-stage stroke imaging doi.org/10.1016/j.cc...
Stretching decelerates ring-opening metathesis at cis-olefins in stressed molecular bows @Westlake_Uni nature.com/articles/s41...
Stretching decelerates ring-opening metathesis at cis-olefins in stressed molecular bows
New research from @zhichangliu.bsky.social group at Westlake University, published in Nature Communications @nature.com , reveals an unexpected strain–reactivity relationship: stretching a cis-C=C bond decelerates ring-opening metathesis. go.nature.com/4qAuQQR
Sequence dual-coordination-induced dynamic chirality in artificial racemic and meso macrocycles doi.org/10.1016/j.cc...
Stretching decelerates ring-opening metathesis at cis-olefins in stressed molecular bows
New research from @zhichangliu.bsky.social group at Westlake University, published in Nature Communications @nature.com , reveals an unexpected strain–reactivity relationship: stretching a cis-C=C bond decelerates ring-opening metathesis. go.nature.com/4qAuQQR
New research from @zhichangliu.bsky.social group at Westlake University, published in Nature Communications @nature.com , reveals an unexpected strain–reactivity relationship: stretching a cis-C=C bond decelerates ring-opening metathesis. go.nature.com/4qAuQQR
Stretching decelerates ring-opening metathesis at cis-olefins in stressed molecular bows - Nature Communications
Ring-opening metathesis polymerization (ROMP) of strained cycloalkenes emerged as an approach for synthesizing macromolecular materials but the ROMP of C=C bonds upon stretching remains unexplored. He...
go.nature.com
Stretching decelerates ring-opening metathesis at cis-olefins in stressed molecular bows
New research from @zhichangliu.bsky.social group at Westlake University, published in Nature Communications @nature.com , reveals an unexpected strain–reactivity relationship: stretching a cis-C=C bond decelerates ring-opening metathesis. go.nature.com/4qAuQQR
Stretching decelerates ring-opening metathesis at cis-olefins in stressed molecular bows
New research from @zhichangliu.bsky.social group at Westlake University, published in Nature Communications @nature.com , reveals an unexpected strain–reactivity relationship: stretching a cis-C=C bond decelerates ring-opening metathesis. go.nature.com/4qAuQQR
Unlocking Aliphatic Tertiary Amides as Versatile Substrates for Photocatalytic Reductive Cross-Coupling Reactions www.chinesechemsoc.org/doi/10.31635... #chemistry #openaccess #science
CCS Chemistry Article Highlight: Achieving Direct α-Heteroarylation of Amides and Esters under Mild Conditions, Eliminating the Need for Transition Metals Click to read: www.chinesechemsoc.org/do/10.5555/6... #chemistry #openaccess #science
Stretching decelerates ring-opening metathesis at cis-olefins in stressed molecular bows
More strain. Slower reaction. We reveal an unexpected strain–reactivity relationship: stretching a cis-C=C bond decelerates ring-opening metathesis rather than accelerating it. We show how molecular strain can be engineered to control reaction kinetics. nature.com/articles/s41...
Stretching decelerates ring-opening metathesis at cis-olefins in stressed molecular bows
More strain. Slower reaction. We reveal an unexpected strain–reactivity relationship: stretching a cis-C=C bond decelerates ring-opening metathesis rather than accelerating it. We show how molecular strain can be engineered to control reaction kinetics. nature.com/articles/s41...
More strain. Slower reaction. We reveal an unexpected strain–reactivity relationship: stretching a cis-C=C bond decelerates ring-opening metathesis rather than accelerating it. We show how molecular strain can be engineered to control reaction kinetics. nature.com/articles/s41...
Stretching decelerates ring-opening metathesis at cis-olefins in stressed molecular bows @Westlake_Uni nature.com/articles/s41...
Stretching decelerates ring-opening metathesis at cis-olefins in stressed molecular bows
Stretching decelerates ring-opening metathesis at cis-olefins in stressed molecular bows @Westlake_Uni nature.com/articles/s41...
Stretching decelerates ring-opening metathesis at cis-olefins in stressed molecular bows
Stretching decelerates ring-opening metathesis at cis-olefins in stressed molecular bows @Westlake_Uni nature.com/articles/s41...
🎉 Congratulations to the winner of our #ACS2026 raffle George Padilla (Cornell University), who won a pair of Bose headphones and a CCS gift bag! Thank you to everyone who stopped by our booth! See you next year!
New in The Innovation Drug Discovery! Strategies for developing anti-Hantavirus drugs. A fatal hantavirus outbreak aboard a polar cruise ship offers a stark warning. This article details three key antiviral drug‑development strategies. doi.org/10.59717/j.x... #hantavirus #DrugDiscovery
Zeolite Nanosheet-Confined Pt–FeOx Catalysts for Reversible Hydrogen Cycling via the Methylcyclohexane–Toluene System www.chinesechemsoc.org/doi/10.31635... #chemistry #openaccess #science
Stretching decelerates ring-opening metathesis at cis-olefins in stressed molecular bows @Westlake_Uni nature.com/articles/s41...
Stretching decelerates ring-opening metathesis at cis-olefins in stressed molecular bows
More strain. Slower reaction. We reveal an unexpected strain–reactivity relationship: stretching a cis-C=C bond decelerates ring-opening metathesis rather than accelerating it. We show how molecular strain can be engineered to control reaction kinetics. nature.com/articles/s41...
Cobalt-catalyzed highly enantioselective radical alkylation of indolizines with styrenes doi.org/10.1016/j.cc...