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Oxidation of P4S3 with ICN gives exo,exo- and endo,exo-beta-P4S3I2, -beta-P4S3(CN)2, and -beta-P4S3I(CN) as initial products. Ab initio GIAO calculations of NMR shieldings at the RHF/3-21G* level are sufficient to assign the spectrum of endo,exo-beta-P4S3(CN)2 and to confirm the identity of the observed endo,exo-beta-P4S3I(CN), which has iodine rather than cyanide in the hindered endo position. Reaction of enantiomerically pure (S)-1-phenyltetrahydroisoquinoline with exo,exo-beta-P4S3I2 gives an exo,exo-diamide in which the Cs symmetry of the beta-P4S3 cage is lost. The two amido groups, planar at nitrogen, are each capable of two orientations, giving four P-N bond rotamers at 183 K. The 31P NMR spectra of three of these have been fitted, and assigned to particular rotamers by ab initio shielding calculations.

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Reference:
Tetrahydroisoquinoline – Wikipedia,
1,2,3,4-Tetrahydroisoquinoline | C9H11N – PubChem

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The present invention refers to a method for the kinetic resolution of a chiral primary or secondary amine by treating the amine with a chiral, hydroxamic acid derived reagent of the formula (I). These chiral reagents are particularly useful for the kinetic resolution of cyclic amines and may be generated in situ in the presence of an N-heterocyclic carbene, thus allowing for a catalytic reaction.

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Reference:
Tetrahydroisoquinoline – Wikipedia,
1,2,3,4-Tetrahydroisoquinoline | C9H11N – PubChem

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Polymorphic forms of solifenacin have been prepared and characterized. These polymorphic forms are particularly useful in pharmaceutical compositions.

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Reference:
Tetrahydroisoquinoline – Wikipedia,
1,2,3,4-Tetrahydroisoquinoline | C9H11N – PubChem

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Efficient and enantioselective: Using the iodine-bridged dimeric iridium complex [{Ir(H)[(S,S)-(f)-binaphane]}2(mu-I)3] +I- (1) a wide range of tetrahydroisoquinoline alkaloids, including the substructure of the pharmaceutical drug solifenacin, were obtained with excellent enantioselectivities and high turnover numbers (see scheme). Copyright

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Reference:
Tetrahydroisoquinoline – Wikipedia,
1,2,3,4-Tetrahydroisoquinoline | C9H11N – PubChem

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Biocatalysis provides a potentially sustainable means of chemical manufacturing. However, the tailoring of enzymes to industrial processes is often laborious and time consuming, which limits the broad implementation of this approach. High-throughput screening methods can expedite the search for suitable catalysts, but are often constrained by the need for labelled substrates. The generalization of such techniques would therefore significantly expand their impact. Here we have established a versatile ultrahigh-throughput microfluidic assay that enables isolation of functional oxidases from libraries that contain up to 107 members. The increased throughput over prevalent methods led to complete active-site remodelling of cyclohexylamine oxidase in one round of directed evolution. A 960-fold increase in catalytic efficiency afforded an enzyme with wild-type levels of activity for a non-natural substrate, allowing biocatalytic synthesis of a sterically demanding pharmaceutical intermediate with complete stereocontrol. The coupled enzyme assay is label free and can be easily adapted to re-engineer any oxidase.

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Reference:
Tetrahydroisoquinoline – Wikipedia,
1,2,3,4-Tetrahydroisoquinoline | C9H11N – PubChem

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A thermomorphic ionic-liquid-based microemulsion system was successfully applied for the Ru-catalyzed asymmetric transfer hydrogenation of ketones. On the basis of the temperature-dependent multiphase behavior of the targeted microemulsion, simple product separation as well as catalyst recycling could be realized. The use of water-soluble ligands improved the immobilization of the catalyst in the microemulsion phase and significantly decreased the catalyst leaching into the organic layer upon extraction of the product. Eventually, the optimized microemulsion system could be applied to a wide range of aromatic ketones that were reduced with good isolated yields (up to 98%) and enantioselectivities (up to 97%), while aliphatic ketones were less successful.

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Tetrahydroisoquinoline – Wikipedia,
1,2,3,4-Tetrahydroisoquinoline | C9H11N – PubChem

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Chemical Research Letters, May 2021. Research speed reading in 2021. Electric Literature of 118864-75-8, The transformation of simple hydrocarbons into more complex and valuable products via catalytic C–H bond functionalisation has revolutionised modern synthetic chemistry. 118864-75-8, Name is (S)-1-Phenyl-1,2,3,4-tetrahydroisoquinoline, molecular formula is C15H15N. In a Article,once mentioned of 118864-75-8

The nucleophilic addition of formaldehyde tert-butylhydrazone to simple aldehydes (a formal hetero-carbonyl?ene reaction) can be performed with good reactivity and excellent enantioselectivity by virtue of the dual hydrogen-bonding activation exerted by amide?squaramide organocatalysts. The resulting hydroxydiazenes (azo alcohols) were isolated in high yields as enantiomerically enriched azoxy compounds after a regioselective azo-to-azoxy transformation. Subsequent derivatization provides an entry to relevant amino alcohols, oxazolidinones, and derivatives thereof.

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Reference:
Tetrahydroisoquinoline – Wikipedia,
1,2,3,4-Tetrahydroisoquinoline | C9H11N – PubChem

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Chemical Research Letters, May 2021. Related Products of 118864-75-8, The reaction rate of a catalyzed reaction is faster than the reaction rate of the uncatalyzed reaction at the same temperature.118864-75-8, Name is (S)-1-Phenyl-1,2,3,4-tetrahydroisoquinoline, molecular formula is C15H15N. In a Patent,once mentioned of 118864-75-8

Larene and nitrogen heterocyclic derivatives and its application. The invention of the formula (V) compound, preparation method and its application in medicine. Specifically, the invention relates to general formula (V) and the preparation method of the compound and derivatives thereof as a therapeutic agent, in the prevention and treatment of hyperlipidemia, hypercholesterolemia, hypertriglyceridemia, denatured, the failure, type II diabetes, hyperglycemia, obesity or insulin resistance sickness and the use of metabolic syndrome. The disclosed compounds are also capable of reducing total cholesterol, LDL-cholesterol, triglyceride, and improve LDL receptor expression, inhibiting PCSK9 expression. (by machine translation)

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Reference:
Tetrahydroisoquinoline – Wikipedia,
1,2,3,4-Tetrahydroisoquinoline | C9H11N – PubChem

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A novel asymmetric synthesis of 1-aryl-1,2,3,4-tetrahydroisoquinolines has been developed. The key step in this synthesis is the diastereoselective addition of homochiral (2-lithiophenyl)acetaldehyde acetals to the sulfonylimine 25 and to the arylimines 28 and 31. The best diastereoselectivity is obtained by addition of the bis(2-methoxypropan-2- yl)-substituted 1,3-dioxolane 6e to benzylidene-p-anisidine (31) with an HPLC-determined diastereomeric ratio 32c/33c = 92.1:7.9. The N-tosyl and the N-(4-methoxyphenyl) groups of the addition products 26d, 27d, 32c, and 33c are cleaved with sodium in liquid ammonia and ammonium cerium(IV) nitrate, respectively, to yield the primary amines 35 and 36. The acid-catalysed cyclization of the sulfonamides 26d and 27d and the carbamates 37 and 38, prepared from 35 and 36, leads to the enantiomerically pure dihydroisoquinolines 40 and 41, respectively. During the cyclization of the sulfonamides 26d, 27d and the carbamates 37, 38 the chiral auxiliary – the diol 39 – is cleaved unchanged and can be recovered in good yields.

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Reference:
Tetrahydroisoquinoline – Wikipedia,
1,2,3,4-Tetrahydroisoquinoline | C9H11N – PubChem

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New Advances in Chemical Research, May 2021. The appropriate choice of redox mediator can avoid electrode passivation and overpotential, which strongly inhibit the efficient activation of substrates in electrolysis. SDS of cas: 118864-75-8, At least one of the reactants interacts with the solid surface in a physical process called adsorption in such a way. 118864-75-8, name is (S)-1-Phenyl-1,2,3,4-tetrahydroisoquinoline. In an article,Which mentioned a new discovery about 118864-75-8

Amine oxidases are useful bio-catalysts for the synthesis of enantiomerically pure 1, 2 and 3 chiral amines. Enzymes in this class (e.g., MAO-N from Aspergillus niger) reported previously have been shown to be highly S selective. Herein we report the development of an enantiocomplementary R-selective amine oxidase based on 6-hydroxy-D-nicotine oxidase (6-HDNO) with broadened substrate scope and high enantioselectivity. The engineered 6-HDNO enzyme has been applied to the preparative deracemisation of a range of racemic amines to yield S-configured products, for example, (S)-nicotine, in high ee. Nicotine rush: An R-selective amine oxidase based on 6-hydroxy-D-nicotine oxidase (6-HDNO) with broadened substrate scope and high enantioselectivity has been developed. The engineered 6-HDNO enzyme is applied to the preparative deracemization of a range of racemic amines to yield S-configured products, for example, (S)-nicotine, in high ee.

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Reference:
Tetrahydroisoquinoline – Wikipedia,
1,2,3,4-Tetrahydroisoquinoline | C9H11N – PubChem