The reaction of primary amines with In37P20(O2CR)51 is found to remove In(O2CR)3 subunits from In37P20(O2CR)51. This loss of Z-type ligands coincides with structural rearrangement to alleviate core strain and passivate phosphorus atoms. This result consolidates conflicting claims that primary amines both promote and retard precursor conversion rates for InP nanocrystals.

Investigating the role of amine in InP nanocrystal synthesis: destabilizing cluster intermediates by Z-type ligand displacement / Gary, D. C.; Petrone, A.; Li, X.; Cossairt, B. M.. - In: CHEMICAL COMMUNICATIONS. - ISSN 1359-7345. - 53:1(2017), pp. 161-164. [10.1039/C6CC07952K]

Investigating the role of amine in InP nanocrystal synthesis: destabilizing cluster intermediates by Z-type ligand displacement

Petrone A.;
2017

Abstract

The reaction of primary amines with In37P20(O2CR)51 is found to remove In(O2CR)3 subunits from In37P20(O2CR)51. This loss of Z-type ligands coincides with structural rearrangement to alleviate core strain and passivate phosphorus atoms. This result consolidates conflicting claims that primary amines both promote and retard precursor conversion rates for InP nanocrystals.
2017
Investigating the role of amine in InP nanocrystal synthesis: destabilizing cluster intermediates by Z-type ligand displacement / Gary, D. C.; Petrone, A.; Li, X.; Cossairt, B. M.. - In: CHEMICAL COMMUNICATIONS. - ISSN 1359-7345. - 53:1(2017), pp. 161-164. [10.1039/C6CC07952K]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/762382
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