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The specification is heterocyclic compound and including an electron transporting layer are disclosed. (by machine translation)

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C-H activation has surfaced as an increasingly powerful tool for molecular sciences, with notable applications to material sciences, crop protection, drug discovery, and pharmaceutical industries, among others. Despite major advances, the vast majority of these C-H functionalizations required precious 4d or 5d transition metal catalysts. Given the cost-effective and sustainable nature of earth-abundant first row transition metals, the development of less toxic, inexpensive 3d metal catalysts for C-H activation has gained considerable recent momentum as a significantly more environmentally-benign and economically-attractive alternative. Herein, we provide a comprehensive overview on first row transition metal catalysts for C-H activation until summer 2018.

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In homogeneous catalysis, the catalyst is in the same phase as the reactant. The number of collisions between reactants and catalyst is at a maximum.In a patent, 141-30-0, name is 3,6-Dichloropyridazine, introducing its new discovery. COA of Formula: C4H2Cl2N2

(Chemical Equation Presented) A new class of N-heteroaryl hydrazones has been developed as an alternative to N-acylhydrazones and 2-amlnophenol-derlved lmlnes In asymmetric allylatlon, crotylatlon, and clnnamylatlon reactions with chlral allylchlorosllanes. The hydrazones are readily and Inexpensively prepared, perform well In the allylatlon chemistry, and more Importantly, the product hydrazldes may be smoothly reduced by Pd(OH)2catalyzed hydrogenation to reveal the corresponding amine products.

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A class of polycyclic compounds of general formula (I), wherein Base1, Base2, Y, Za, Xa, Xa1, Xb, Xb1, Xc, Xc1, Xd, Xd1, R1, R1a, R2, R2a, R3, R4, R4a, R5, R6, R6a, R7, R7a, R8, R8a, and R9 are defined herein, that may be useful as inductors of type I interferon production, specifically as STING active agents, are provided. Also provided are processes for the synthesis and use of compounds.

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In homogeneous catalysis, the catalyst is in the same phase as the reactant. The number of collisions between reactants and catalyst is at a maximum.In a patent, 141-30-0, name is 3,6-Dichloropyridazine, introducing its new discovery. Formula: C4H2Cl2N2

The syntheses of new pyridazinethiocarboxamides are described using the reaction of Lawesson’s reagent with pyridazine carboxamides or by reacting lithiopyridazines with phenylisothiocyanate. Metalation of 3-N-tert-butylpyridazinethiocarboxamides and carboxamides with LTMP followed by reaction of the lithio derivatives with various electrophiles gave access to a wide range of polysubstituted pyridazines. An unexpected regioselectivity at the meta position of the thiocarboxamide group was observed and explained.

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A new ligand has been designed using dihydroquinine as the chiral controller for asymmetric dihydroxylation of alkenes. The purpose of this design of the ligand is to find out the transition state involved in the mechanism of asymmetric dihydroxylation, which may shed some light to differentiate between the hypothesis put forward by Sharpless’ and Corey’s groups. The present study supports the hypothesis proposed by Sharpless et al. and it appears that the L shaped cleft may be involved in governing the high selectivity of asymmetric dihydroxylation of alkenes.

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There is increasing evidence that compounds with selectivity for gamma-aminobutyric acidA (GABAA) alpha2- and/or alpha3-subtypes may retain the desirable anxiolytic activity of nonselective benzodiazepines but possess an improved side effect profile. Herein we describe a novel series of GABAA alpha2/alpha3 subtype-selective agonists leading to the identification of the development candidate 17, a nonsedating anxiolytic in preclinical animal assays.

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Different substituted pyridinium N-heteroarylaminides have been prepared in one step from N-aminopyridinium iodide and the corresponding heteroaryl halide by two alternative routes. The use of Pd catalysis allowed the easy preparation of products from the less reactive haloheterocycles. The use of water as a solvent in conjunction with microwave heating dramatically diminishes the reaction time without having an adverse effect on reaction yields.

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Compounds of formula (I) wherein A, R, W, Q, n and m have the meaning according to the claims can be employed, inter alia, for the treatment of tauopathies and Alzheimer’s disease.

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Alpha series of novel 3,6-diazabicyclo[3.1.1]heptane derivatives 4a-f was synthesized and their affinity and selectivity towards alpha4beta2 and alpha7 nAChR subtypes were evaluated. The results of the current study revealed a number of compounds (4a, 4b and 4c) having a very high affinity for alpha4beta2 (Ki at alpha4beta2 ranging from 0.023 to 0.056 nM) versus alpha7 nAChR subtypes; among these compounds, the 3-(6-bromopyridin-3-yl)-3,6-diazabicyclo[3.1.1]heptane 4c was found to be the most alpha7alpha4beta2 selective term in receptor binding assays (alpha7alpha4beta2 = 1295). Moreover, compound 4d also had high affinity for the alpha4beta2 nAChR subtype (Ki = 1.2 nM) with considerably high selectivity (alpha7/alpha4beta2 = 23300).

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