Literature DB >> 20608680

Utilizing self-exchange to address the binding of carboxylic acid ligands to CdSe quantum dots.

Bernd Fritzinger1, Richard K Capek, Karel Lambert, José C Martins, Zeger Hens.   

Abstract

We use solution NMR techniques to analyze the organic/inorganic interface of CdSe quantum dots (Q-CdSe) synthesized using oleic acid as a surfactant. It is shown that the resulting Q-CdSe are stabilized by tightly bound oleic acid species that only exchange upon addition of free oleic acid. The NMR analysis points toward a two-step exchange mechanism where free ligands are initially physisorbed within the ligand shell to end up as bound, chemisorbed ligands in a second step. Importantly, we find that every ligand is involved in this exchange process. By addition of oleic acid with a deuterated carboxyl headgroup, we demonstrate that the bound ligands are oleate ions and not oleic acid molecules. This explains why a dynamic adsorption/desorption equilibrium only occurs in the presence of excess free oleic acid, which donates the required proton. Comparing the number of oleate ligands to the excess cadmium per CdSe quantum dot, we find a ratio of 2:1. This completes the picture of Q-CdSe as organic/inorganic entities where the surface excess of Cd(2+) is balanced by a double amount of oleate ligands, yielding overall neutral nanoparticles.

Entities:  

Year:  2010        PMID: 20608680     DOI: 10.1021/ja104351q

Source DB:  PubMed          Journal:  J Am Chem Soc        ISSN: 0002-7863            Impact factor:   15.419


  25 in total

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Journal:  Nat Mater       Date:  2011-10       Impact factor: 43.841

3.  Quantum Dot Surface Engineering: Toward Inert Fluorophores with Compact Size and Bright, Stable Emission.

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4.  CdS Quantum Dots as Potent Photoreductants for Organic Chemistry Enabled by Auger Processes.

Authors:  Jonas K Widness; Daniel G Enny; Kaelyn S McFarlane-Connelly; Mahilet T Miedenbauer; Todd D Krauss; Daniel J Weix
Journal:  J Am Chem Soc       Date:  2022-06-30       Impact factor: 16.383

5.  Ligand exchange and the stoichiometry of metal chalcogenide nanocrystals: spectroscopic observation of facile metal-carboxylate displacement and binding.

Authors:  Nicholas C Anderson; Mark P Hendricks; Joshua J Choi; Jonathan S Owen
Journal:  J Am Chem Soc       Date:  2013-11-26       Impact factor: 15.419

6.  Colloidal metal oxide nanocrystal catalysis by sustained chemically driven ligand displacement.

Authors:  Jonathan De Roo; Isabel Van Driessche; José C Martins; Zeger Hens
Journal:  Nat Mater       Date:  2016-01-25       Impact factor: 43.841

7.  Surface coordination chemistry of germanium nanocrystals synthesized by microwave-assisted reduction in oleylamine.

Authors:  Sara R Smock; Katayoon Tabatabaei; Travis J Williams; Susan M Kauzlarich; Richard L Brutchey
Journal:  Nanoscale       Date:  2020-01-20       Impact factor: 7.790

8.  Synthesis and structures of cadmium carboxylate and thiocarboxylate compounds with a sulfur-rich coordination environment: carboxylate exchange kinetics involving tris(2-mercapto-1-t-butylimidazolyl)hydroborato cadmium complexes, [Tm(Bu(t))]Cd(O2CR).

Authors:  Ava Kreider-Mueller; Patrick J Quinlivan; Jonathan S Owen; Gerard Parkin
Journal:  Inorg Chem       Date:  2015-03-31       Impact factor: 5.165

9.  Comparative study on coating CdSe nanocrystals with surfactants.

Authors:  Sławomir Oszwałdowski; Kenneth P Roberts
Journal:  Mikrochim Acta       Date:  2013-08-08       Impact factor: 5.833

10.  Chemo- and Stereoselective Intermolecular [2+2] Photocycloaddition of Conjugated Dienes using Colloidal Nanocrystal Photocatalysts.

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Journal:  Chem Catal       Date:  2021-03-02
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