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On the molybdenum tellurates of Li{sup +}, Na{sup +}, Rb{sup +}, Cs{sup +} and NH{sub 4}{sup +}; Ueber Molybdotellurate des Li{sup +}, Na{sup +}, Rb{sup +}, Cs{sup +} und NH{sub 4}{sup +}

Abstract

The heteropoly compounds often crystallize with a high water content and are thus capable of forming hydrogen bridges. These hydrogen bridges have until now attracted undeservedly little attention in the literature. This is all the more surprising considering the already mentioned fact that some polywolframates have remarkable physiological properties (antifumoural or antiviral effects), as do molybdates and vanadates. The hydrogen bridge bonds undoubtedly play a capital role in the interactions with the biologic substrate. The aim of the study was the preparation, chemical and spectroscopic characterisation (in particular IR and {sup 125}Te-NMR spectroscopy) and X-ray structural analysis of molybdenum tellurates. Further the proton acceptor behaviour of the ANDERSON-EVANS anion was examined. The oxygen atoms surrounding the Mo-atoms and the Te atom are uni-, bi- or trivalent. This raises the question whether the different covalences influence the hydrogen bridge bonding behaviour of the ANDERSON-EVANS anion (TeMo{sub 6}O{sub 24}{sup 6-}). (orig./BBR) [Deutsch] Die Heteropolyverbindungen kristallisieren haeufig kristallwasserreich und koennen somit Wasserstoffbruecken ausbilden. Ungerechtfertigterweise fanden diese Wasserstoffbruecken bislang in der Literatur nur wenig Beruecksichtigung. Dies ist umso erstaunlicher, als, wie bereits erwaehnt, manche Polywolframate, wie auch Molybdate und Vanadate ueber bemerkenswerte physiologische Eigenschaften (antitumorale oder antivirale Wirkung) verfuegen. Bei der Wechselwirkung mit dem  More>>
Authors:
Publication Date:
Mar 09, 1993
Product Type:
Thesis/Dissertation
Report Number:
INIS-mf-14197
Reference Number:
SCA: 400201; PA: DEN-94:0F5239; EDB-94:069546; NTS-94:022032; SN: 94001190119
Resource Relation:
Other Information: TH: Diss.; PBD: 9 Mar 1993
Subject:
37 INORGANIC, ORGANIC, PHYSICAL AND ANALYTICAL CHEMISTRY; MOLYBDENUM COMPOUNDS; CHEMICAL PREPARATION; STRUCTURAL CHEMICAL ANALYSIS; CHEMICAL PROPERTIES; TELLURATES; LITHIUM COMPOUNDS; SODIUM COMPOUNDS; RUBIDIUM COMPOUNDS; CESIUM COMPOUNDS; AMMONIUM COMPOUNDS; CHEMICAL BONDS; 400201; CHEMICAL AND PHYSICOCHEMICAL PROPERTIES
OSTI ID:
10143502
Research Organizations:
Muenchen Univ. (Germany). Fakultaet fuer Chemie und Pharmazie
Country of Origin:
Germany
Language:
German
Other Identifying Numbers:
Other: ON: DE94761041; TRN: DE94F5239
Availability:
OSTI; NTIS (US Sales Only); INIS
Submitting Site:
DEN
Size:
263 p.
Announcement Date:
Jul 05, 2005

Citation Formats

Frost, M. On the molybdenum tellurates of Li{sup +}, Na{sup +}, Rb{sup +}, Cs{sup +} and NH{sub 4}{sup +}; Ueber Molybdotellurate des Li{sup +}, Na{sup +}, Rb{sup +}, Cs{sup +} und NH{sub 4}{sup +}. Germany: N. p., 1993. Web.
Frost, M. On the molybdenum tellurates of Li{sup +}, Na{sup +}, Rb{sup +}, Cs{sup +} and NH{sub 4}{sup +}; Ueber Molybdotellurate des Li{sup +}, Na{sup +}, Rb{sup +}, Cs{sup +} und NH{sub 4}{sup +}. Germany.
Frost, M. 1993. "On the molybdenum tellurates of Li{sup +}, Na{sup +}, Rb{sup +}, Cs{sup +} and NH{sub 4}{sup +}; Ueber Molybdotellurate des Li{sup +}, Na{sup +}, Rb{sup +}, Cs{sup +} und NH{sub 4}{sup +}." Germany.
@misc{etde_10143502,
title = {On the molybdenum tellurates of Li{sup +}, Na{sup +}, Rb{sup +}, Cs{sup +} and NH{sub 4}{sup +}; Ueber Molybdotellurate des Li{sup +}, Na{sup +}, Rb{sup +}, Cs{sup +} und NH{sub 4}{sup +}}
author = {Frost, M}
abstractNote = {The heteropoly compounds often crystallize with a high water content and are thus capable of forming hydrogen bridges. These hydrogen bridges have until now attracted undeservedly little attention in the literature. This is all the more surprising considering the already mentioned fact that some polywolframates have remarkable physiological properties (antifumoural or antiviral effects), as do molybdates and vanadates. The hydrogen bridge bonds undoubtedly play a capital role in the interactions with the biologic substrate. The aim of the study was the preparation, chemical and spectroscopic characterisation (in particular IR and {sup 125}Te-NMR spectroscopy) and X-ray structural analysis of molybdenum tellurates. Further the proton acceptor behaviour of the ANDERSON-EVANS anion was examined. The oxygen atoms surrounding the Mo-atoms and the Te atom are uni-, bi- or trivalent. This raises the question whether the different covalences influence the hydrogen bridge bonding behaviour of the ANDERSON-EVANS anion (TeMo{sub 6}O{sub 24}{sup 6-}). (orig./BBR) [Deutsch] Die Heteropolyverbindungen kristallisieren haeufig kristallwasserreich und koennen somit Wasserstoffbruecken ausbilden. Ungerechtfertigterweise fanden diese Wasserstoffbruecken bislang in der Literatur nur wenig Beruecksichtigung. Dies ist umso erstaunlicher, als, wie bereits erwaehnt, manche Polywolframate, wie auch Molybdate und Vanadate ueber bemerkenswerte physiologische Eigenschaften (antitumorale oder antivirale Wirkung) verfuegen. Bei der Wechselwirkung mit dem biologischen Substrat spielen Wasserstoffbrueckenbindungen mit Sicherheit eine zentrale Rolle. Ziel der vorliegenden Arbeit war die Darstellung, chemische und spektroskopische Charakterisierung (speziell IR- sowie {sup 125}Te-NMR-Spektroskopie) sowie die Roentgen-Strukturanalyse von Molybdotelluraten. Weiterhin wurde das Protonen-Akzeptorverhalten des ANDERSON-EVANS-Anions untersucht. Die Sauerstoffatome, welche die Mo-Atome und das Te-Atom umgeben, sind ein-, zwei- oder dreibinding. Es stellte sich die Frage, ob diese unterschiedliche Bindigkeit das Wasserstoffbrueckenbindungsverhalten des ANDERSON-EVANS-Anions (TeMo{sub 6}O{sub 24}{sup 6-}) beeinflusst. (orig./BBR)}
place = {Germany}
year = {1993}
month = {Mar}
}