Phosphinimide ligands: Phosphinimide ligands, also known as phosphorane iminato ligands, are any of a class of organic compounds of the general formula NPR3. The R groups represent organic substituents or, in rare cases, halides or NR2 groups. (Chemistry) [100%] 2023-12-20 [Ligands] [Phosphorus compounds]...
Josiphos ligands: A Josiphos ligand is a type of chiral diphosphine which has been modified to be substrate-specific; they are widely used for enantioselective synthesis. They are named after the technician who made the first one, Josi Puleo. (Chemistry) [100%] 2024-01-08 [Coordination chemistry] [Phosphines]...
Tm ligands: Tm is an abbreviation for anionic tridentate ligand based on three imidazole-2-thioketone groups bonded to a borohydride center. They are examples of scorpionate ligands. (Chemistry) [100%] 2023-12-21 [Inorganic chemistry] [Tripodal ligands]...
Josiphos ligands: A Josiphos ligand is a type of chiral diphosphine which has been modified to be substrate-specific; they are widely used for enantioselective synthesis. They are widely used in asymmetric catalysis. [100%] 2025-01-21 [Coordination chemistry] [Phosphines]...
Dialkylbiaryl phosphine ligands: In organic and organometallic chemistry, dialkylbiaryl phosphine (or dialkylbiarylphosphine) ligands are phosphorus-containing supporting ligands that are used to modulate the chemical reactivity of palladium and other transition metal based catalysts. They were first described by Stephen L. (Chemistry) [81%] 2022-12-07 [Phosphines] [Catalysis]...
Bulky cyclopentadienyl ligands: In the area of organometallic chemistry, a bulky cyclopentadienyl ligand is jargon for a ligand of the type C5H5−nRn where R is a branched alkyl and n = 3 or 4. Representative examples are the tetraisopropyl derivative C5HPr4 and the ... [81%] 2023-06-06 [Cyclopentadienyl complexes] [Organometallic chemistry]...
C2-Symmetric ligands: In homogeneous catalysis, C2-symmetric ligands refer to ligands that lack mirror symmetry but have C2 symmetry (two-fold rotational symmetry). Such ligands are usually bidentate and are valuable in catalysis. (Chemistry) [81%] 2023-10-11 [Coordination chemistry] [Stereochemistry]...
Bulky cyclopentadienyl ligands: In the area of organometallic chemistry, a bulky cyclopentadienyl ligand is jargon for a ligand of the type C5H5−nR−n where R is a branched alkyl and n = 3 or 4. Representative examples are the tetraisopropyl derivative C5HPr−4 ... (Chemistry) [81%] 2022-09-25 [Cyclopentadienyl complexes] [Organometallic chemistry]...
Dialkylbiaryl phosphine ligands: Dialkylbiaryl phosphine ligands are phosphine ligands that are used in homogeneous catalysis. They have proved useful in Buchwald-Hartwig amination and etherification reactions as well as Negishi cross-coupling, Suzuki-Miyaura cross-coupling, and related reactions. [81%] 2025-03-11 [Phosphines] [Catalysis]...
GDNF family of ligands: The GDNF family of ligands (GFL) consists of four neurotrophic factors: glial cell line-derived neurotrophic factor (GDNF), neurturin (NRTN), artemin (ARTN), and persephin (PSPN). GFLs have been shown to play a role in a number of biological processes including ... [70%] 2024-11-03 [TGFβ domain] [Protein families]...
Systematic evolution of ligands by exponential enrichment: Systematic evolution of ligands by exponential enrichment (SELEX), also referred to as in vitro selection or in vitro evolution, is a combinatorial chemistry technique in molecular biology for producing oligonucleotides of either single-stranded DNA or RNA that specifically bind ... (Biology) [53%] 2024-01-14 [Evolution] [Molecular biology]...
Systematic evolution of ligands by exponential enrichment: Systematic evolution of ligands by exponential enrichment (SELEX), also referred to as in vitro selection or in vitro evolution, is a combinatorial chemistry technique in molecular biology for producing oligonucleotides of either single-stranded DNA or RNA that specifically bind ... (Technique for producing oligonucleotides that specifically bind to a target) [53%] 2024-03-28 [Evolution] [Genetics techniques]...
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