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Synthesis of organophosphorus (III) compounds from white phosphorus via an adduct-catalyzed tandem electro-thermal approach

Scientists have developed a novel synthesis method for trivalent phosphorus compounds, leveraging an adduct-catalyzed tandem electro-thermal approach to produce high-yielding organophosphorus compounds with improved efficiency and selectivity. The approach also enables the in-situ consumption of renewable energy sources.

SourceScience China Press·JournalNational Science Review·TypeExperimental study·DateMar 24, 2025

GIST researchers develop new defect passivation strategy for perovskite solar cells

A team of GIST researchers developed a new defect passivation strategy for polycrystalline perovskites, leading to improved power conversion efficiency and long-term operational stability. The strategy uses a chemically identical polytype of perovskite to suppress defects in the crystal structure.

SourceGIST (Gwangju Institute of Science and Technology)·JournalNature Communications·TypeExperimental study·DateSep 10, 2024

Teaching an old metal new tricks

Researchers at the California Institute of Technology have successfully developed a method to recycle samarium diiodide, a crucial reagent in synthesizing molecules that can lead to new pharmaceuticals. This breakthrough enables large-scale industrial production, making it possible to create essential compounds like taxol, an anticance...

Moffitt researchers develop new chemical method to enhance drug discovery

Researchers have developed a novel sulfur fluoride exchange (SuFEx) reagent that enables highly controlled production of crucial sulfur-based molecules. This innovation has resulted in the creation of over 70 new chemical compounds with immediate applications in medicinal chemistry and pharmaceutical development.

SourceH. Lee Moffitt Cancer Center & Research Institute·JournalNature Communications·TypeExperimental study·DateAug 16, 2024

Choosing outcomes: new switchable process for synthesizing 3-aminoindolines and 2’-aminoarylacetic acids from same substrate

Researchers at Okayama University developed a switchable process to synthesize 3-aminoindolines and 2'-aminoaryl acetic acids from a common substrate using Grignard reagents and azide compounds. The new protocol utilizes tautomerism to control chemoselectivity and achieves efficient synthesis with good yields.

SourceOkayama University·JournalChemical Communications·TypeExperimental study·DateJun 24, 2024

New study unveils direct synthesis of FCMs via solid-state mechanochemical reaction between graphite and PTFE

Researchers developed a novel solid-state mechanochemical reaction to synthesize FCMs from PTFE and graphite, producing materials with enhanced storage capacity and electrochemical stability. The new method bypasses toxic reagents and offers a safer alternative for practical applications.

SourceUlsan National Institute of Science and Technology(UNIST)·JournalAdvanced Functional Materials·DateSep 22, 2023

NTU Singapore scientists develop a sustainable way to convert kale waste into products for health and personal care

A new technique converts kale waste into phytochemicals for use in health and personal care products, preserving potency and using non-toxic solvents. The method reduces energy consumption and emissions, making it attractive for industry adoption and supporting a circular economy.

SourceNanyang Technological University·JournalSeparation and Purification Technology·TypeExperimental study·DateAug 16, 2023

Recent progress in synthesis and surface modification of nickel-rich layered oxide cathode materials for lithium-ion batteries

Researchers from South China University of Technology have developed novel surface modification techniques for nickel-rich layered oxide cathode materials, improving their electrochemical performance. The techniques allow for high-performance nickel-rich cathode materials to be synthesized, enabling in-depth mechanisms to be captured a...

SourceInternational Journal of Extreme Manufacturing·JournalInternational Journal of Extreme Manufacturing·DateOct 31, 2022

An easier and safer way to synthesize medicines

Researchers at Ohio State University have developed a new method to synthesize medicines using carbenes, reducing the need for explosive intermediates. This breakthrough could enable faster production of cyclopropanes, a key ingredient in COVID-19 treatments and other medications.

SourceOhio State University·JournalScience·TypeExperimental study·DateAug 4, 2022

Self-assembled, interlocked threads: Spinning yarn with no machine needed

Pitt and Princeton engineers develop a system that converts chemical energy into mechanical action, allowing two-dimensional polymer sheets to rise and rotate in spiral helices without external power. The self-assembly process creates a complex, three-dimensional structure resembling twisted yarn being formed by a rotating spindle.

SourceUniversity of Pittsburgh·JournalPNAS Nexus·TypeComputational simulation/modeling·DateJun 23, 2022

Scientific consortium established by national institutes of health provides real-time risk assessment of SARS-CoV-2 variants on immune protection

The SAVE program, a NIH initiative, provides real-time risk assessment of SARS-CoV-2 variants on immune protection. It uses a coordinated approach to identify and curate data about these variants, their impact on immunity, and their effects on vaccine protection.

SourceThe Mount Sinai Hospital / Mount Sinai School of Medicine·JournalNature·TypeCommentary/editorial·DateMar 31, 2022

Bioengineered nanoparticles show promise for fibrinogen manufacture, says Journal of Pharmaceutical Analysis study

Researchers developed a novel polymeric nanoparticle that selectively binds to fibrinogen in human plasma, offering a simpler and less expensive way to manufacture fibrinogen concentrate. This breakthrough could lead to the creation of more efficient fibrinogen-specific affinity reagents for drug development.

SourceCactus Communications·JournalJournal of Pharmaceutical Analysis·TypeExperimental study·DateJan 13, 2022

In equilibrium

Researchers have found a complex equilibrium between bimetallic species in the Br-Mg exchange, with lithium magnesiates playing a key role. Detailed NMR spectroscopic studies revealed that an alkyl-rich lithium magnesiate is the active species of the reaction.

SourceWiley·JournalAngewandte Chemie International Edition·DateMar 2, 2021

Combination therapy against cancer

Scientists from Germany and China combine chemotherapeutic and photodynamic agents in a nanocapsule to destroy cancer cells. The treatment is effective against resistant tumors and stops tumor growth in live mice, offering a promising new approach to cancer therapy.

SourceWiley·JournalAngewandte Chemie International Edition·DateOct 13, 2020

Palladium catalysts can do it

Researchers have found a way to directly couple aryl halides and alkyllithium compounds using palladium catalysts containing YPhos-type ligands. This breakthrough enables the efficient synthesis of complex chemical structures with minimal side products, reducing costs and environmental impact.

SourceWiley·JournalAngewandte Chemie International Edition·DateOct 9, 2020

Innocent and highly oxidizing

Researchers at University of Freiburg developed a novel, stable oxidizing agent that overcomes common disadvantages of existing oxidants. The new reagent allows for the synthesis of reactive species in standard laboratory solvents and has broad applicability in inorganic, organic chemistry, electrochemical research.

SourceUniversity of Freiburg·JournalAngewandte Chemie International Edition·DateJun 3, 2020

Simple N-terminal modification of proteins

Researchers at Osaka University have reported a straightforward approach to protein modification by targeting the N-terminus, providing a new tool for protein engineering. The method uses a single-step reaction to conjugate functional molecules to proteins, resulting in highly efficient site-specific labeling under mild conditions.

SourceOsaka University·JournalChemBioChem·DateFeb 13, 2020

Electrochemistry amps up in pharma

Researchers use electrochemistry to synthesize difficult-to-make compounds and reduce waste and toxic byproducts compared to traditional chemical reagents. The ElectraSyn 2.0 module has enabled chemists to access the technology without electronics expertise, but scaling up production remains a challenge.

SourceAmerican Chemical Society·JournalChemical & Engineering News·DateNov 6, 2019

New WHO autoantibody reference reagent will benefit SLE patients

A new WHO autoantibody reference reagent has been developed to align autoantibody analyses, improving diagnosis and treatment for patients with Systemic Lupus Erythematosus (SLE) worldwide. The reference reagent was evaluated in an international study and showed significant improvements in differences between different anti-dsDNA assays.

SourceUppsala University·JournalAnnals of the Rheumatic Diseases·DateSep 5, 2019

When changing one atom makes molecules better

Researchers have found a way to replace hydrogen atoms with fluorine in organic molecules, increasing their metabolic stability and potentially leading to more effective pharmaceuticals. This breakthrough could lead to the development of new treatments for various diseases.

SourceUniversity of Vienna·JournalNature Chemistry·DateMar 5, 2019