Lead–strontium borate halides with hilgardite-type structure and their SHG properties
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P. Lightfoot | S. Stefanovich | V. Dolgikh | P. Berdonosov | B. Egorova | A. Kuznetsov | A. Olenev | Thushitha Mahenthirarajah
[1] S. Stefanovich,et al. Crystal structure of the lead bromo-borate Pb2[B5O9]Br from precision single-crystal X-ray diffraction data and the problem of optical nonlinearity of hilgardites , 2007 .
[2] S. Stefanovich,et al. Nonlinear-optical susceptibility of hilgardite-like borates M2B5O9XM2B5O9X(M=Pb,Ca,Sr,Ba(M=Pb,Ca,Sr,Ba; X=Cl,BrX=Cl,Br) , 2005 .
[3] Zheshuai Lin,et al. The development of new borate-based UV nonlinear optical crystals , 2005 .
[4] N. N. Mochenova,et al. Reinvestigation of the Pb2[B5O9]Br structure based on single‐crystal data , 2004 .
[5] S. Stefanovich,et al. New hilgardite-group polyborate Pb2[B5O9]Br with high optical nonlinearity , 2003 .
[6] R. Bhatt,et al. Growth and characterization of PbB4O7 single crystals , 2001 .
[7] L. Kloo,et al. Ab initio calculations on bismuth cluster polycations. , 2001, Chemistry.
[8] Masashi Yoshimura,et al. Recent development of nonlinear optical borate crystals: key materials for generation of visible and UV light , 2000 .
[9] S. A. Vinogradova,et al. Crystal structure of strontium hilgardite , 2000 .
[10] Petra Becker,et al. Borate Materials in Nonlinear Optics , 1998 .
[11] A. Laaksonen,et al. Visualization of solvation structures in liquid mixtures. , 1997, Journal of molecular graphics & modelling.
[12] L Laaksonen,et al. A graphics program for the analysis and display of molecular dynamics trajectories. , 1992, Journal of molecular graphics.
[13] W. R. Wadt,et al. Ab initio effective core potentials for molecular calculations. Potentials for main group elements Na to Bi , 1985 .
[14] E. Macherauch,et al. Recent German activities in the field of x-ray stress analysis☆ , 1977 .
[15] R. D. Shannon. Revised effective ionic radii and systematic studies of interatomic distances in halides and chalcogenides , 1976 .
[16] C. Fouassier,et al. Structure cristalline du bromoborate Ca2B5O9Br , 1973 .
[17] P. Hagenmuller,et al. Les halogénoborates M2B5O9X (M = Ca, Sr, Ba, Eu, Pb; X = Cl, Br) , 1971 .
[18] T. Peters,et al. Luminescence and structural properties of alkaline earth chloroborates activated with divalent europium , 1970 .
[19] S. K. Kurtz,et al. A powder technique for the evaluation of nonlinear optical materials , 1968 .