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BAYER 205

Scientists at Bayer implemented traffic lights for the prioritization of molecules from the HTS hits. Their score is based on solubility, lipophilicity, molecular weight, Polar Surface Area (PSA), and number of rotatable bonds. [Pg.242]

All Molecules Processed Red/Yellow Alerts FDA Mutagenicity Alerts Octanol/water logP (CLOGP) [Pg.243]

Bioavailability Rule of Five Bioavailability Abbott Score PharmaAlgorithms pKa Syracuse Solubility Octanol/water logP (KOWWIN) [Pg.243]

Andrews Binding Energy Polar/Non-Polar Surface Area 3D Clark log(brain/blood) [Pg.243]

These descriptors are similar to R05 criteria, since PSA directly correlates with the sum of hydrogen-bond donors and acceptors. Water solubility is also critically related to permeability and bioavailability. [Pg.243]


Welter O, Bayer T and Greschner J 1991 Micromachined silicon sensors for scanning force microscopy J. Vac. Sc/. Technol. B 9 1353... [Pg.1723]

The utility of acid-base titrimetry improved when NaOH was first introduced as a strong base titrant in 1846. In addition, progress in synthesizing organic dyes led to the development of many new indicators. Phenolphthalein was first synthesized by Bayer in 1871 and used as a visual indicator for acid-base titrations in 1877. Other indicators, such as methyl orange, soon followed. Despite the increasing availability of indicators, the absence of a theory of acid-base reactivity made selecting a proper indicator difficult. [Pg.278]

Bayer s alumina Bayferrox Bayhibit AM Bay leaves Bayleton... [Pg.93]

Xanthenes date from 1871 when von Bayer synthesized fluorescein (5) by the condensation of two moles of resorcinol with one mole of phthaUc anhydride in the presence of concentrated sulfuric acid (1). [Pg.398]

The above batch process has undergone numerous refinements to improve yields, processing characteristics, purity, and storage stabiUty, but it remains the standard method of manufacture for these products. Recentiy a continuous process has been reported by Bayer AG (6) wherein the condensation is carried out in an extmder. The by-products are removed in a degassing zone, and the molten polymer, mixed with stabilizers, is subsequendy cracked to yield raw monomer. [Pg.178]


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Alumina and its numerous varieties the Bayer process

Aluminum hydroxide Bayer process

Aluminum oxide Bayer process

Aspirin (Bayer, Ecotrin, St. Joseph

BAYER CHEMICALS CORP

BAYER CORP

BAYER MATERIALSCIENCE

Bauxite Bayer process

Bayer A.G., Leverkusen

Bayer AG

Bayer Agricultural Products Group

Bayer Agrochem

Bayer Aktiengesellschaft

Bayer Basic and Fine Chemicals Business Group

Bayer Cadon

Bayer Chemicals

Bayer Company

Bayer Corporation

Bayer Crop Sciences

Bayer CropScience

Bayer Cross

Bayer DCA

Bayer Desmopan

Bayer Diagnostics

Bayer Healthcare

Bayer Ketazine process

Bayer MaterialScience Apec

Bayer MaterialScience Bayblend

Bayer MaterialScience Makrolon

Bayer Pharmaceutical

Bayer Plastics

Bayer Process steps

Bayer Schering Pharma

Bayer Texin

Bayer Timed-Release

Bayer Villiger reaction

Bayer Villiger reaction lactonization

Bayer acid

Bayer antimalarials

Bayer aspirin

Bayer compound nifedipine

Bayer cycle

Bayer diphenylmethane diisocyanate

Bayer drug competitor

Bayer hydrate

Bayer mergers

Bayer model

Bayer pattern

Bayer phosgene manufacture

Bayer polyurethane production

Bayer process

Bayer process alumina refining

Bayer process liquors

Bayer process residue

Bayer process zeolite

Bayer process, alumina produced

Bayer process, description

Bayer reaction

Bayer reactor

Bayer strain

Bayer technology

Bayer, Ernst

Bayer, Frederick

Bayer, Friedrich

Bayer, Herbert

Bayer, Karl Josef

Bayer, Karl Joseph

Bayer, Otto

Bayer, Penny

Bayer, sorafenib

Bayer-Hall process

Bayer-Villager oxidation

Bayer-Villiger

Bayer-Villiger lactone synthesis

Bayer-Villiger oxidation

Bayer-Villiger rearrangement

Bayer-type catalyst

Bayer/Schering

Bayer’s acid

Bayer’s process

Bayer’s strain

Bayer’s strain theory

Bayluscide/Bayer

Combination-Bayer process

Examples from Bayer

Farbenfabriken Bayer

Flowsheets Bayer process

GE Bayer Silicones

Hydrazine Bayer Ketazine

Hydrazine Bayer process

Hydrogen Bayer process

Industrial processes Bayer process

Maximum Bayer

Mechanism Bayer-Villiger oxidation

Nifedipine (Bayer

Polycarbonate/Bayer

Polyester Blends/Bayer

Rearrangements Bayer-Villiger rearrangement

Sulfuric acid Bayer Bertrams process

The Bayer Process

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