Nanoarchitectonics of Glass Coatings for Near-Infrared Shielding: From Solid-State Cluster-Based Niobium Chlorides to the Shaping of Nanocomposite Films
The high potential of [{Nb6Cli 12}La 6] cluster-based building blocks as near-infrared radiation blockers for energy saving applications is exposed in the present paper (i = inner edge-bridging ligand, a = apical ligand of the Nb6; L = H2O and/or Cl). To do so, a combined experimental and theoretic...
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Veröffentlicht in: | ACS applied materials & interfaces 2022-05, Vol.14 (18), p.21116-21130 |
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Zusammenfassung: | The high potential of [{Nb6Cli 12}La 6] cluster-based building blocks as near-infrared radiation blockers for energy saving applications is exposed in the present paper (i = inner edge-bridging ligand, a = apical ligand of the Nb6; L = H2O and/or Cl). To do so, a combined experimental and theoretical investigation of edge-bridged [{Nb6Cli 12}Cla 6–x (H2O) x ] m+/0/n− cluster unit series (x = 0, 4, 6; m = 2, 3, 4; n = 2, 3, 4) has been carried out. By using the K4[{Nb6Cli 12}Cla 6] starting solid-state precursor, we explored the behavior of the [{Nb6Cli 12}Cla 6]4– cluster unit during the different steps of its integration as a building block into a polyvinylpyrrolidone (PVP) matrix to form a glass coating composite denoted {Nb6Cli 12} m+@PVP (m = 2 or 3). The optical, vibrational and redox properties [{Nb6Cli 12}Cla 6–x (H2O) x ] m+/0/n− building blocks have been interpreted with the support of electronic structure calculations and simulation of properties. The chemical modifications and oxidation properties have been identified and studied thanks to various techniques in solution. Combining Raman and ultraviolet–visible spectroscopies, electrochemistry, and quantum chemical simulations, we bring new knowledge to the understanding of the evolution of the properties of the [{Nb6Cli 12}Cla 6–x (H2O) x ] m+/0/n− cluster units as a function of the number of valence electron per cluster (VEC) and the nature of terminal ligands (x = 0, n = 4; x = 4, charge = 0; x = 6, m = 4). The fine understanding of the physical properties and vibrational fingerprints depending on the VEC and chemical modifications in solution are mandatory to master the processing of cluster-based building blocks for the controlled design and shaping of glass coating nanocomposites. On the basis of this acquired knowledge, [{Nb6Cli 12}Cla 6–x (H2O) x ] m+/0/n− building blocks were embedded in a PVP matrix. The resulting {Nb6Cli 12}2+@PVP nanocomposite film shows excellent ultraviolet (UV, 280–380 nm) and near-infrared (NIR, 780–1080 nm) blocking ability (>90%) and a highly visible light transmittance thanks to the controlled integration of the {Nb6Cli 12}2+ cluster core. The figures of merit (FOM) value of T vis/T sol (T vis = visible transmittance and T sol = solar transmittance) as well as the haze, clarity, and the NIR shielding values (S NIR) were measured. After optimization of the integration process, a {Nb6Cli 12}2+@PVP nanocomposite on glass substrate has been obtained with a h |
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ISSN: | 1944-8244 1944-8252 |
DOI: | 10.1021/acsami.2c00308 |