All in one porous material: exceptional sorption and selective sensing of hexavalent chromium by using a Zr4+ MOF

Author:

Rapti Sofia1234,Sarma Debajit15671,Diamantis Stavros A.1894,Skliri Euaggelia1011124,Armatas Gerasimos S.1011124ORCID,Tsipis Athanassios C.1234,Hassan Youssef S.13141516,Alkordi Mohamed13141516ORCID,Malliakas Christos D.1567,Kanatzidis Mercouri G.1567,Lazarides Theodore1894ORCID,Plakatouras John C.1234ORCID,Manos Manolis J.1234ORCID

Affiliation:

1. Department of Chemistry

2. University of Ioannina

3. 45110 Ioannina

4. Greece

5. Northwestern University

6. Evanston

7. USA

8. Aristotle University of Thessaloniki

9. 54124 Thessaloniki

10. Department of Materials Science and Technology

11. University of Crete

12. 71003 Heraklion

13. Center for Materials Science

14. Zewail City of Science and Technology

15. 6th of October

16. 12588 Egypt

Abstract

A new microporous Zr4+ MOF combines both extraordinary sorption capability and exceptional luminescence sensing properties for Cr(vi) in aqueous media.

Publisher

Royal Society of Chemistry (RSC)

Subject

General Materials Science,Renewable Energy, Sustainability and the Environment,General Chemistry

Reference72 articles.

1. Receptors for tetrahedral oxyanions

2. Sources and toxicity of hexavalent chromium

3. Toxicity and Carcinogenicity of Chromium Compounds in Humans

4. USA-EPA, Chromium in Drinking Water, http://water.epa.gov/drink/info/chromium/

5. European Comis-sion. Council Directive 98/83/EC on the Quality of Water in-tented for Human Consumption, http://eur-lex.europa.eu/legalcontent/EN/TXT/?uri=CELEX:31998L0083

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