Frequency and temperature dependent dielectric dispersion of 20PbF2?20TeO2?(60?x)B2O3?xEu2O3(x=0 to 2.5, mole fraction, %) glasses prepared by the melt?quenching technique were investigated in the frequency r...Frequency and temperature dependent dielectric dispersion of 20PbF2?20TeO2?(60?x)B2O3?xEu2O3(x=0 to 2.5, mole fraction, %) glasses prepared by the melt?quenching technique were investigated in the frequency range 1 Hz?10 MHz and temperature range 313?773 K. Dielectric relaxation dynamics was analyzed based on the electric modulus behavior. Dielectric losses (tanδ) are found to be negligibly small in the temperature range 313?523 K, proving good thermal stability of the glasses. The present Eu2O3-doped oxyfluroborate glasses showed low dielectric loss at higher frequency and lower temperature, proving their suitability for nonlinear optical materials.展开更多
Dielectric spectroscopy of E. coli cell before and after exposure to heavy metals Cd^2+ , Cu^2+ , Zn^2+ and Ca^2+ was investigated. The results indicate that changes in dielectric spectra reflect effects of heavy ...Dielectric spectroscopy of E. coli cell before and after exposure to heavy metals Cd^2+ , Cu^2+ , Zn^2+ and Ca^2+ was investigated. The results indicate that changes in dielectric spectra reflect effects of heavy metal on the structure and function of E. coli cells. Heavy metal can change membrane capacitance as well as pennittivity and conductivity of the cytoplasm. Changes in volume fraction suggested that dielectric measurement could monitor the growth of E. coli cells. These results demonstrated that dielectric spectroscopy was a potential effective technique for studying electric properties of biological cells.展开更多
Trichloromethanesulfenyl thiocyanate, CCl3SSCN, was generated and studied by photoelectron spectroscopy (PES), photoionization mass spectroscopy (PIMS), and theoretical calculations. This molecule exhibits a gauch...Trichloromethanesulfenyl thiocyanate, CCl3SSCN, was generated and studied by photoelectron spectroscopy (PES), photoionization mass spectroscopy (PIMS), and theoretical calculations. This molecule exhibits a gauche conformation, and the torsional angle around S-S bond is 91.4° due to the sulfur-sulfur lone pair interactions. After ionization, the ground-state cationic-radical form of CCl3SSCN+ adopts a trans planar main-atom structure with Cs symmetry. The highest occupied molecular orbital (HOMO) of CC13SSCN corresponds to the electrons mainly localized on the sulfur 3p lone pair MO. The first ionization energy is determined to be 10.40 cV.展开更多
The white organic light emitting device (OLED) with single-structure using a polymer blend as the light emitting layer is fabricated.Heat treatment is used to control the ratio between the intensities of main electrol...The white organic light emitting device (OLED) with single-structure using a polymer blend as the light emitting layer is fabricated.Heat treatment is used to control the ratio between the intensities of main electroluminescent spectral peaks.The electroluminescent spectrum of our device is quite similar to that of white inorganic LED produced by Nichia Corporation after being annealed,and its turn-on voltage can be decreased by 1 V.展开更多
基金supported by a grant-in-aid for a scientific research from the Department of Atomic Energy(DAE)-Board of Research in Nuclear Science[S.No.2012/34/17/BRNS]of the Government of India
文摘Frequency and temperature dependent dielectric dispersion of 20PbF2?20TeO2?(60?x)B2O3?xEu2O3(x=0 to 2.5, mole fraction, %) glasses prepared by the melt?quenching technique were investigated in the frequency range 1 Hz?10 MHz and temperature range 313?773 K. Dielectric relaxation dynamics was analyzed based on the electric modulus behavior. Dielectric losses (tanδ) are found to be negligibly small in the temperature range 313?523 K, proving good thermal stability of the glasses. The present Eu2O3-doped oxyfluroborate glasses showed low dielectric loss at higher frequency and lower temperature, proving their suitability for nonlinear optical materials.
基金Supported by the National Natural Science Foundation of China (No. 20673014:20273010). Acknowledgements: We are grateful to Dr. Zhu Ruiyan, from State Key Laboratory of Agro-biotechnology, China Agricultural University, for providing the strain of E. coli cell, and thanks should be given to Dr. Xin Mingxiu, from College of Life Science, Beijing Normal University, for his instrumental support for the culture of E. coil cell.
文摘Dielectric spectroscopy of E. coli cell before and after exposure to heavy metals Cd^2+ , Cu^2+ , Zn^2+ and Ca^2+ was investigated. The results indicate that changes in dielectric spectra reflect effects of heavy metal on the structure and function of E. coli cells. Heavy metal can change membrane capacitance as well as pennittivity and conductivity of the cytoplasm. Changes in volume fraction suggested that dielectric measurement could monitor the growth of E. coli cells. These results demonstrated that dielectric spectroscopy was a potential effective technique for studying electric properties of biological cells.
基金This work was supported by the Knowledge Innovation Program of the Chinese Academy of Sciences (No.KZCX2-YW-205) and the Hundred Talents Fund, the 973 Program of Ministry of Science and Technology of China (No.2006CB403701), and the National Natural Science Foundation of China (No.20577052, No.20673123, No.20473094, and No.20503035).
文摘Trichloromethanesulfenyl thiocyanate, CCl3SSCN, was generated and studied by photoelectron spectroscopy (PES), photoionization mass spectroscopy (PIMS), and theoretical calculations. This molecule exhibits a gauche conformation, and the torsional angle around S-S bond is 91.4° due to the sulfur-sulfur lone pair interactions. After ionization, the ground-state cationic-radical form of CCl3SSCN+ adopts a trans planar main-atom structure with Cs symmetry. The highest occupied molecular orbital (HOMO) of CC13SSCN corresponds to the electrons mainly localized on the sulfur 3p lone pair MO. The first ionization energy is determined to be 10.40 cV.
文摘The white organic light emitting device (OLED) with single-structure using a polymer blend as the light emitting layer is fabricated.Heat treatment is used to control the ratio between the intensities of main electroluminescent spectral peaks.The electroluminescent spectrum of our device is quite similar to that of white inorganic LED produced by Nichia Corporation after being annealed,and its turn-on voltage can be decreased by 1 V.