Simultaneous Identification of Spectral Properties and Sizes of Multiple Particles in Solution With Subnanometer Resolution
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HYBRID
Green Open Access
Yes
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No
Abstract
We report an unsurpassed solution characterization technique based on analytical ultracentrifugation, which demonstrates exceptional potential for resolving particle sizes in solution with sub-nm resolution. We achieve this improvement in resolution by simultaneously measuring UV/Vis spectra while hydrodynamically separating individual components in the mixture. By equipping an analytical ultracentrifuge with a novel multi-wavelength detector, we are adding a new spectral discovery dimension to traditional hydrodynamic characterization, and amplify the information obtained by orders of magnitude. We demonstrate the power of this technique by characterizing unpurified CdTe nanoparticle samples, avoiding tedious and often impossible purification and fractionation of nanoparticles into apparently monodisperse fractions. With this approach, we have for the first time identified the pure spectral properties and band-gap positions of discrete species present in the CdTe mixture.
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Keywords
Nanoparticles, Analytical methods, Colloids, Cadmium telluride, Energy gap, Energy gap, Maschinenbau, Analytical methods, Quantum Dots, Analytical ultracentrifugation, Cadmium Compounds, Hydrodynamics, Nanoparticles, Cadmium telluride, Spectrophotometry, Ultraviolet, Colloids, Ultracentrifuges, Particle Size, Tellurium, Centrifuges, Ultracentrifugation
Fields of Science
02 engineering and technology, 01 natural sciences, 0104 chemical sciences, 0210 nano-technology
Citation
Karabudak, E., Brookes, E., Lesnyak, V., Gaponik, N., Eychmüller, A., Walter, J., ...Cölfen, H. (2016). Simultaneous identification of spectral properties and sizes of multiple particles in solution with subnanometer resolution. Angewandte Chemie, 55(39), 11770-11774. doi:10.1002/anie.201603844
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OpenCitations Citation Count
51
Volume
55
Issue
39
Start Page
11770
End Page
11774
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CrossRef : 43
Scopus : 49
PubMed : 13
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Mendeley Readers : 29
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49
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47
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716
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394
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