Category Ranking

98%

Total Visits

921

Avg Visit Duration

2 minutes

Citations

20

Article Abstract

Tin oxide based materials have attracted much attention as new sources for nonlinear optical (NLO) devices, while the electronic mechanism behind the structure and nonlinearity is still unclear. In this work, by precisely controlling different functionalization ligands, here a series of binuclear [(BuSn)(TEOA)L] (L = monocarboxylic acid ligand) complexes have been synthesized and characterized; we also adopted a new method to make the metal clusters and PMMA blend together for NLO testing. Importantly, the electronic structure, static third-order NLO properties, sum over states (SOS) have been studied by both experimental and density function theory (DFT) analysis. The effects for general NLO polarizability under various conditions, including different substitutions ligands and replacement of the metal cores, have been further investigated. The results indicate the static second hyperpolarizabilities (γ) is inversely proportional to the band gap decreases. Notably, the theory predicts that the third-order nonlinear coefficient will double through the synergistic effects of pull-push groups. The hole-electron analysis of the main excited states indicates the simultaneous introduction of pull-push electron groups into the system cause the excitation of the valence layer from LE to LLCT, which also leads to significant increase in the γ value of complex . This work demonstrates that an efficient adjustment for the intensity of NLO polarizability can be achieved by regulating the substitutions and the material structures, providing a new potential for the application of tin-oxo clusters in the field of nonlinear optics.

Download full-text PDF

Source
http://dx.doi.org/10.1021/acs.inorgchem.0c03331DOI Listing

Publication Analysis

Top Keywords

third-order nonlinear
8
nonlinear optical
8
nlo polarizability
8
nlo
5
experimental theoretical
4
theoretical studies
4
studies effects
4
effects structural
4
structural modification
4
modification tin
4

Similar Publications

A Theoretical Investigation of Third-Order Optical Susceptibility in Metronidazolium-Picrate Crystal and Its Potential for Quantum Memory Applications.

ACS Omega

September 2025

Laboratório de Modelagem Molecular Aplicada e Simulação (LaMMAS), Universidade Estadual de Goiás, Anápolis, GO 75001-970, Brazil.

In this work, we report a theoretical investigation of the third-order nonlinear optical properties of the metronidazolium-picrate salt. The effects of the crystal environment are accounted for by the Iterative Charge Embedding approach, and the electronic calculations are carried out at the DFT (CAM-B3LYP/6-311++G-(d,p)) level. Furthermore, we use the results to parametrize a cavity Quantum Electrodynamics model for a quantum memory based on the Off-Resonant Cascaded Absorption protocol.

View Article and Find Full Text PDF

Giant and Tunable Optical Nonlinearity via Electrochemical Control of the Tellurium-Electrolyte Interface.

Nano Lett

September 2025

Shaanxi Joint Lab of Graphene, State Key Laboratory of Photon-Technology in Western China Energy, International Collaborative Center on Photoelectric Technology and Nano Functional Materials, Institute of Photonics & Photon-Technology School of Physics Northwest University, Xi'an 710069, China.

The semiconductor-electrolyte interface with strong electrical tunability offers a platform for tuning nonlinear optical (NLO) processes and achieving giant optical nonlinearities. However, such a demonstration and fundamental mechanistic understanding of electrochemically tuned NLO properties have not been reported. Here, we developed an electrochemical Z-scan system to characterize the evolution of NLO responses in tellurium nanorod films under bias voltage.

View Article and Find Full Text PDF

A computational protocol is developed to evaluate the second- and third-order nonlinear optical (NLO) properties of donor-acceptor benzene derivatives, incorporating ab initio electron correlation, frequency dispersion, and solvent effects, with the aim of achieving high predictive accuracy. The computational scheme encompasses (i) high-level CCSD(T) calculations of the static first (β) and second (γ) hyperpolarizabilities, (ii) the assessment of the performance of the CAM-B3LYP and M06-2X exchange-correlation DFT functionals to evaluate β and γ values, (iii) the use, after assessment of its effectiveness, of the multiplicative scheme to evaluate second harmonic generation responses, (iv) the evaluation of the frequency dispersion factors on β and γ by using Bishop's frequency-dispersion polynomials, and their use, in combination with the multiplicative correction scheme, to evaluate third harmonic generation second hyperpolarizabilities. This hybrid approach is shown to closely reproduce the experimental trends, although systematic quantitative deviations still remain with respect to experimental values.

View Article and Find Full Text PDF

In this study, graphene oxide (GO) was synthesized via a modified low-temperature Hummer's method and incorporated into a poly (ethylene oxide) (PEO) matrix to fabricate PEO/GO nanocomposite thin films using a casting technique. This work explores how GO incorporation affects the structural and optical properties of PEO, with emphasis on its suitability for optical switching and other optoelectronic applications. The films were prepared with varying GO concentrations and characterized using XRD, UV-Vis spectroscopy, and other standard techniques.

View Article and Find Full Text PDF

During the long-term preservation of murals, the degradation of mural image information poses significant challenges to the restoration and conservation of world cultural heritage. Currently, mural conservation scholars focus on image segmentation techniques for mural restoration and protection. However, existing image segmentation methods suffer from suboptimal segmentation quality.

View Article and Find Full Text PDF