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Organolead

Halostibines, Dihalostibines, and Related Compounds. Alkyl dichi oro- and alkyldibromostibines are readily prepared by the alkylation of the corresponding antimony trihaUde with an organolead reagent (67,104) ... [Pg.207]

The reaction of tnchlorotrifluoroethane with lead in the presence of carbonyl substrates gives the 1 -chloro-2,2-difluoroethenyl carbinols, presumably via a fluo-rinated organolead intermediate [25] (equaUon 18)... [Pg.674]

Chiral organolead compounds 19 can be obtained, with retention of configuration, from the corresponding a-alkoxy stannanes via tin/lilhium exchange and transmetalation with bro-mo(tributyl)lcad12. [Pg.124]

Seinen W, Vos JG, van Spanje I, Snoek M, Brands R, Hooykaas H (1977a) Toxicity of organotin compounds. II. Comparative in vivo and in vitro studies with various organotin and organolead compounds in different animal species with special emphasis on lymphocyte cytotoxicity. Toxicology and Applied Pharmacology, 42(1) 197-212. [Pg.51]

The main concern regarding tetraalkyl lead has been about human health hazards, a concern that has resulted in the progressive replacement of leaded petrol by unleaded petrol in most countries (Environmental Health Criteria 85). There has been particular concern about possible brain damage to children in polluted urban areas. Little work has been done on the effects of organolead compounds on wildlife or ecosystems, so the following account will be brief. [Pg.177]

Certain OP compounds including DFP, mipafox, and leptophos Organomercury and organolead compounds... [Pg.297]

Chang LW. 1990. The neurotoxicology and pathology of organomercuiy, organolead, and organotin. J Toxicol Sci 15 125-151. [Pg.171]

Currently available CRMs A number of organolead (tetra- and triaUcyllead) compounds are commercially available to be used as calibrants. There are also a number of interesting CRMs an urban dust certified for trimethyUead and more appear to be in development The interest in organolead compotmds is, however, on the decline due to the gradual disappearance of the tetraethyl anti-knock agent from petrol. [Pg.81]

Pyrzynska K (1996) Organolead speciation in environmental samples a review. Mikrochim Acta 122 279-293. [Pg.108]

Temperature programming packed-capillary and open capillary HTLC-ICP-MS (up to 200 °C) has been reported [738]. //.HTLC-ICP-MS instrumental coupling has been applied to organotin (tetraethyltin, tributyltin chloride and triphenyltin chloride) and organolead (tetramethyllead and tetraethyllead) compounds [756]. HTLC-ICP-MS can be used for the determination of organometallic compounds at low concentrations. The observed limit of detection (LOD) was 5pg for Pb in... [Pg.257]

This chromatographic method might be used to try the separation of the enantiomers of a racemic mixture of asymmetrically substituted organolead compounds, which are now available 37>54). [Pg.85]

Kochkin, D. A., Azerbayev, I. N. Organotin and Organolead Monomers and Polymers, Alma-Ata, Nauka Publishers 1968, (Russ.)... [Pg.137]


See other pages where Organolead is mentioned: [Pg.237]    [Pg.145]    [Pg.68]    [Pg.71]    [Pg.132]    [Pg.28]    [Pg.674]    [Pg.371]    [Pg.404]    [Pg.26]    [Pg.124]    [Pg.167]    [Pg.182]    [Pg.199]    [Pg.240]    [Pg.189]    [Pg.420]    [Pg.24]    [Pg.163]    [Pg.177]    [Pg.178]    [Pg.80]    [Pg.81]    [Pg.657]    [Pg.677]    [Pg.677]    [Pg.264]    [Pg.328]    [Pg.76]    [Pg.108]    [Pg.341]    [Pg.342]    [Pg.343]    [Pg.394]    [Pg.396]    [Pg.403]    [Pg.406]   
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See also in sourсe #XX -- [ Pg.190 , Pg.271 ]

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Acetates organoleads

Aluminum organoleads

Antiknock agents organolead

Antimony organoleads

Approaches to Organolead Compounds

Arsenic organoleads

Basic Organolead Carboxylates

Bimetallic Organolead Compounds with Group VIII Metals

Coordination polymers organolead

Cyclic Organolead Compounds

Dithizone organolead compounds

Fuel additives, organoleads

Gasoline organolead compounds

Leaded gasoline organolead compounds

Lithium metal organoleads

Mercury organoleads

Metal Substituted Organolead Sulfides, Selenides and Tellurides

Metals organoleads

Multifunctional Organolead Alkoxides

Organolead , organic compounds

Organolead Compounds with Sulfur, Selenium and Tellurium

Organolead Derivatives of Group I-IV Metals

Organolead Derivatives of Nitrogen, Phosphorus, Arsenic and Antimony

Organolead Derivatives of Organic Thioacids

Organolead Mercaptides, Organoselenides and Organotellurides

Organolead Mixed Oxides

Organolead Pseudohalides

Organolead Salts

Organolead Salts or Esters of Oxygen Acids

Organolead acetates

Organolead alkalis

Organolead alkoxides

Organolead azides—

Organolead carboxylates—

Organolead cations

Organolead compound, preparation from

Organolead compounds

Organolead compounds NMR spectra

Organolead compounds analysis

Organolead compounds biological activity

Organolead compounds bond lengths

Organolead compounds environmental

Organolead compounds industrial

Organolead compounds mass spectrometry

Organolead compounds metabolism

Organolead compounds pollution

Organolead compounds sediments

Organolead compounds shifts 299

Organolead compounds structure

Organolead compounds synthesis

Organolead compounds toxicity

Organolead compounds transition metal complexes

Organolead compounds water

Organolead compounds water soluble

Organolead compounds, derivatization

Organolead compounds, determination

Organolead compounds, health aspects

Organolead compounds, interactions with

Organolead compounds, plumbylenes

Organolead compounds, preparation

Organolead compounds, properties

Organolead compounds, soils

Organolead cyanides—

Organolead halides

Organolead halides reaction with

Organolead halides reduction

Organolead halides synthesis

Organolead hydrides

Organolead hydrides decomposition

Organolead hydrides preparation

Organolead hydrides stability

Organolead hydrides synthesis

Organolead hydroxides

Organolead lithiums

Organolead oxides and hydroxides

Organolead peroxides

Organolead preparation

Organolead production

Organolead reactions with

Organolead reagents

Organolead specific compounds)

Organolead stability

Organolead-Containing Polymers

Organolead-Group-IIB Compounds

Organolead-halide coordination

Organolead-nitrogen compounds

Organolead-phosphorus compounds

Organoleads

Organoleads

Organoleads Organolithiums

Organoleads addition

Organoleads alkenes

Organoleads alkoxides

Organoleads alkynes

Organoleads carbon—hydrogen bonds

Organoleads carbon—lead bonds

Organoleads complexes with

Organoleads disproportionation

Organoleads divalent

Organoleads elemental halogens

Organoleads formation

Organoleads from organolead lithiums

Organoleads group

Organoleads hydrogen halides

Organoleads lead acetates

Organoleads lead halides

Organoleads lead oxides

Organoleads lead sulfides

Organoleads lithium halides

Organoleads organomercurials

Organoleads organotin hydrides

Organoleads reactions with

Organoleads solubility

Organoleads structure

Organoleads tin halides

Polymerization Reactions with Organolead Compounds

Polymers organolead

Polymetallic Organolead Compounds

Polymetallic Organolead Compounds with Manganese and Rhenium

Preparation of organolead compounds

Sediments organoleads

Self-assembly in organolead compounds

Shapiro Commercial Organolead Compounds

Sodium metal organoleads

Speciation of organolead compounds

Subject from organoleads

Subject organoleads

Sulfur organoleads

TRIALKYLSILYLOXY ORGANOLEAD

TRIALKYLSILYLOXY ORGANOLEAD DERIVATIVES

Toxicity of organolead compounds

Unsubstituted Organolead Amides

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