Selective and low temperature transition metal intercalation in layered tellurides.

Abstract:

:Layered materials embrace rich intercalation reactions to accommodate high concentrations of foreign species within their structures, and find many applications spanning from energy storage, ion exchange to secondary batteries. Light alkali metals are generally most easily intercalated due to their light mass, high charge/volume ratio and in many cases strong reducing properties. An evolving area of materials chemistry, however, is to capture metals selectively, which is of technological and environmental significance but rather unexplored. Here we show that the layered telluride T2PTe2 (T=Ti, Zr) displays exclusive insertion of transition metals (for example, Cd, Zn) as opposed to alkali cations, with tetrahedral coordination preference to tellurium. Interestingly, the intercalation reactions proceed in solid state and at surprisingly low temperatures (for example, 80 °C for cadmium in Ti2PTe2). The current method of controlling selectivity provides opportunities in the search for new materials for various applications that used to be possible only in a liquid.

journal_name

Nat Commun

journal_title

Nature communications

authors

Yajima T,Koshiko M,Zhang Y,Oguchi T,Yu W,Kato D,Kobayashi Y,Orikasa Y,Yamamoto T,Uchimoto Y,Green MA,Kageyama H

doi

10.1038/ncomms13809

subject

Has Abstract

pub_date

2016-12-14 00:00:00

pages

13809

issn

2041-1723

pii

ncomms13809

journal_volume

7

pub_type

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