jasco ft ir 4100 spectrometer (JASCO Inc)
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Jasco Ft Ir 4100 Spectrometer, supplied by JASCO Inc, used in various techniques. Bioz Stars score: 96/100, based on 4291 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Average 96 stars, based on 4291 article reviews
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Solvent:Article Title: Heterobimetallic Ln-Zn (Ln = Eu, Gd) complexes with interesting second order nonlinear optical properties. Article Snippet: of the obtained compound was 168–170 °C at 760 torr. Elemental analysis (C35H32F30O15GdZn): calc.: C, 28.40; H: 2.18. Found: C, 28.20; H, 2.54. Fourier transform infrared spectra were acquired using a Evaporation:Article Title: Heterobimetallic Ln-Zn (Ln = Eu, Gd) complexes with interesting second order nonlinear optical properties. Article Snippet: of the obtained compound was 168–170 °C at 760 torr. Elemental analysis (C35H32F30O15GdZn): calc.: C, 28.40; H: 2.18. Found: C, 28.20; H, 2.54. Fourier transform infrared spectra were acquired using a Fourier Transform Infrared Spectroscopy:Article Title: Heterobimetallic Ln-Zn (Ln = Eu, Gd) complexes with interesting second order nonlinear optical properties. Article Snippet: of the obtained compound was 168–170 °C at 760 torr. Elemental analysis (C35H32F30O15GdZn): calc.: C, 28.40; H: 2.18. Found: C, 28.20; H, 2.54. Fourier transform infrared spectra were acquired using a Spectroscopy:Article Title: Heterobimetallic Ln-Zn (Ln = Eu, Gd) complexes with interesting second order nonlinear optical properties. Article Snippet: of the obtained compound was 168–170 °C at 760 torr. Elemental analysis (C35H32F30O15GdZn): calc.: C, 28.40; H: 2.18. Found: C, 28.20; H, 2.54. Fourier transform infrared spectra were acquired using a X-ray Diffraction:Article Title: Heterobimetallic Ln-Zn (Ln = Eu, Gd) complexes with interesting second order nonlinear optical properties. Article Snippet: of the obtained compound was 168–170 °C at 760 torr. Elemental analysis (C35H32F30O15GdZn): calc.: C, 28.40; H: 2.18. Found: C, 28.20; H, 2.54. Fourier transform infrared spectra were acquired using a Functional Assay:Article Title: Heterobimetallic Ln-Zn (Ln = Eu, Gd) complexes with interesting second order nonlinear optical properties. Article Snippet: of the obtained compound was 168–170 °C at 760 torr. Elemental analysis (C35H32F30O15GdZn): calc.: C, 28.40; H: 2.18. Found: C, 28.20; H, 2.54. Fourier transform infrared spectra were acquired using a Synthesized:Article Title: Heterobimetallic Ln-Zn (Ln = Eu, Gd) complexes with interesting second order nonlinear optical properties. Article Snippet: of the obtained compound was 168–170 °C at 760 torr. Elemental analysis (C35H32F30O15GdZn): calc.: C, 28.40; H: 2.18. Found: C, 28.20; H, 2.54. Fourier transform infrared spectra were acquired using a Fluorescence:Article Title: Heterobimetallic Ln-Zn (Ln = Eu, Gd) complexes with interesting second order nonlinear optical properties. Article Snippet: of the obtained compound was 168–170 °C at 760 torr. Elemental analysis (C35H32F30O15GdZn): calc.: C, 28.40; H: 2.18. Found: C, 28.20; H, 2.54. Fourier transform infrared spectra were acquired using a Proximity Ligation Assay:Article Title: Heterobimetallic Ln-Zn (Ln = Eu, Gd) complexes with interesting second order nonlinear optical properties. Article Snippet: of the obtained compound was 168–170 °C at 760 torr. Elemental analysis (C35H32F30O15GdZn): calc.: C, 28.40; H: 2.18. Found: C, 28.20; H, 2.54. Fourier transform infrared spectra were acquired using a Labeling:Article Title: Heterobimetallic Ln-Zn (Ln = Eu, Gd) complexes with interesting second order nonlinear optical properties. Article Snippet: of the obtained compound was 168–170 °C at 760 torr. Elemental analysis (C35H32F30O15GdZn): calc.: C, 28.40; H: 2.18. Found: C, 28.20; H, 2.54. Fourier transform infrared spectra were acquired using a Circular Dichroism:Article Title: Heterobimetallic Ln-Zn (Ln = Eu, Gd) complexes with interesting second order nonlinear optical properties. Article Snippet: of the obtained compound was 168–170 °C at 760 torr. Elemental analysis (C35H32F30O15GdZn): calc.: C, 28.40; H: 2.18. Found: C, 28.20; H, 2.54. Fourier transform infrared spectra were acquired using a |
