99 results on '"Li, Bing-Xuan"'
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2. LnLiSiS4 (Ln = La and Ce): Promising infrared nonlinear optical materials designed by aliovalent substitution from SrCdSiS4
3. AMoO3(IO3) (A = Na and K): Two promising optical materials via properly assembling the Λ-shaped basic building units
4. Halide-driven polarity tuning and optimized SHG-bandgap balance in (C4H11N2)ZnX3 (X = Cl, Br, I).
5. Hg3Se(SeO3)(SO4): A Mixed-Valent Selenium Compound with Mid-Infrared Transmittance Obtained by In Situ Reaction.
6. Performance assessment in the commercial off-the-shelf receiver radio occultation mission on VELOX-CI satellite
7. A retrospective study of poisoning deaths from forensic autopsy cases in northeast China (Liaoning)
8. Breaking Through the Trade‐Off Between Wide Band Gap and Large SHG Coefficient in Mercury‐Based Chalcogenides for IR Nonlinear Optical Application.
9. From CdPb8(SeO3)4Br10 to Pb3(TeO3)Br4: the first tellurite bromide exhibiting an SHG response and mid-IR transparency.
10. (NH4)2(I5O12)(IO3) and K1.03(NH4)0.97(I5O12)(IO3): Mixed‐Valent Polyiodates with Unprecedented I5O12− Unit Exhibiting Strong Second‐Harmonic Generation Responses and Giant Birefringence
11. Ce(IO3)3F and Ce(IO3)2(NO3): Two Mixed-Anion Cerium Iodates with Good Nonlinear Optical and Birefringent Properties.
12. α- and β‑(C4H5N2O)(IO3)·HIO3: Two SHG Materials Based on Organic–Inorganic Hybrid Iodates.
13. [M(OH)2]3(IO3)(SeO4)·H2O (M = Ga and In): metal iodate–selenate nonlinear optical materials with a hexagonal tungsten oxide-type topology.
14. Rational Design of a Rare‐Earth Oxychalcogenide Nd3[Ga3O3S3][Ge2O7] with Superior Infrared Nonlinear Optical Performance.
15. CsHfF4(IO3): A Hafnium Iodate Exhibiting a Strong Second-Harmonic-Generation Effect and a Wide Band Gap Achieved by Mixed-Ligand Acentric Coordination.
16. Growth and Optical Properties of Large-Sized NaVO2(IO3)2(H2O) Crystals for Second-Harmonic Generation Applications.
17. Achieving Large Second Harmonic Generation Effects via Optimal Planar Alignment of Triangular Units.
18. Ba4Ag5(IO3)6(I3O8)3(I4O11)2: a nonlinear optical crystal containing two types of polyiodate anions.
19. CaCe(IO3)3(IO3F)F: a promising nonlinear optical material containing both IO3− and IO3F2− anions.
20. LaBS3 revisited: a promising mid-infrared nonlinear optical material.
21. Cd2(IO3)(PO4) and Cd1.62Mg0.38(IO3)(PO4): metal iodate-phosphates with large SHG responses and wide band gaps.
22. Cd4REO(BO3)3 (RE = Sm, Eu, Tb): three new cadmium–rare earth oxyborates with both good NLO and luminescence properties.
23. Explorations of New SHG Materials in Mercury Iodate Sulfate System**.
24. [o‐C5H4NHOH]2[I7O18(OH)]⋅3 H2O: An Organic–Inorganic Hybrid SHG Material Featuring an [I7O18(OH)]∞2- Branched Polyiodate Chain.
25. [GaF(H2O)][IO3F]: a promising NLO material obtained by anisotropic polycation substitution.
26. M2As2Q5 (M = Ba, Pb; Q = S, Se): a source of infrared nonlinear optical materials with excellent overall performance activated by multiple discrete arsenate anions.
27. Bi4O(I3O10)(IO3)3(SeO4): trimeric condensation of IO43− monomers into the I3O105− polymeric anion observed in a three-component mixed-anion NLO material
28. CsVO2F(IO3): An Excellent SHG Material Featuring an Unprecedented 3D [VO2F(IO3)]− Anionic Framework.
29. Li[LiCs2Cl][Ga3S6]: A Nanoporous Framework of GaS4 Tetrahedra with Excellent Nonlinear Optical Performance.
30. Impressive second harmonic generation response in a novel phase-matchable NLO-active MOF derived from achiral precursors.
31. PbCdF(SeO3)(NO3): A Nonlinear Optical Material Produced by Synergistic Effect of Four Functional Units.
32. Ternary Mixed-Metal Cd4GeS6: Remarkable Nonlinear-Optical Properties Based on a Tetrahedral-Stacking Framework.
33. Sr5ZnGa6S15: a new quaternary non-centrosymmetric semiconductor with a 3D framework structure displaying excellent nonlinear optical performance.
34. Experimental and theoretical studies on the NLO properties of two quaternary non-centrosymmetric chalcogenides: BaAg2GeS4 and BaAg2SnS4.
35. Acentric La3(IO3)8(OH) and La(IO3)2(NO3): Partial Substitution of Iodate Anions in La(IO3)3 by Hydroxide or Nitrate Anion.
36. AgGa2PS6: A New Mid-Infrared Nonlinear Optical Material with a High Laser Damage Threshold and a Large Second Harmonic Generation Response.
37. K2Au(IO3)5 and β-KAu(IO3)4: Polar Materials with Strong SHG Responses Originating from Synergistic Effect of AuO4 and IO3 Units.
38. Corrigendum: Explorations of New SHG Materials in Mercury Iodate Sulfate System**.
39. Ln3GaS6 (Ln = Dy, Y): new infrared nonlinear optical materials with high laser induced damage thresholds.
40. ChemInform Abstract: Syntheses, Characterization, and Optical Properties of Centrosymmetric Ba3(BS3)1.5(MS3)0.5 and Noncentrosymmetric Ba3(BQ3)(SbQ3).
41. ChemInform Abstract: Syntheses, Characterization, and Optical Properties of Centrosymmetric Ba3(BS3)1.5(MS3)0.5 and Noncentrosymmetric Ba3(BQ3)(SbQ3).
42. Experimental and theoretical studies on the NLO properties of two quaternary non-centrosymmetric chalcogenides: BaAg2GeS4 and BaAg2SnS4.
43. Hg 3 Se(SeO 3 )(SO 4 ): A Mixed-Valent Selenium Compound with Mid-Infrared Transmittance Obtained by In Situ Reaction.
44. (NH 4 ) 2 (I 5 O 12 )(IO 3 ) and K 1.03 (NH 4 ) 0.97 (I 5 O 12 )(IO 3 ): Mixed-Valent Polyiodates with Unprecedented I 5 O 12 - Unit Exhibiting Strong Second-Harmonic Generation Responses and Giant Birefringence.
45. Ce(IO 3 ) 3 F and Ce(IO 3 ) 2 (NO 3 ): Two Mixed-Anion Cerium Iodates with Good Nonlinear Optical and Birefringent Properties.
46. α- and β-(C 4 H 5 N 2 O)(IO 3 )·HIO 3 : Two SHG Materials Based on Organic-Inorganic Hybrid Iodates.
47. Rational Design of a Rare-Earth Oxychalcogenide Nd 3 [Ga 3 O 3 S 3 ][Ge 2 O 7 ] with Superior Infrared Nonlinear Optical Performance.
48. CsHfF 4 (IO 3 ): A Hafnium Iodate Exhibiting a Strong Second-Harmonic-Generation Effect and a Wide Band Gap Achieved by Mixed-Ligand Acentric Coordination.
49. Growth and Optical Properties of Large-Sized NaVO 2 (IO 3 ) 2 (H 2 O) Crystals for Second-Harmonic Generation Applications.
50. Corrigendum: Explorations of New SHG Materials in Mercury Iodate Sulfate System*.
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