Principles of Inorganic Materials Design

  • Principles of Inorganic Materials Design
    By John N.. Lalena, John N. Lalena, David A. Cleary

    Pauling, L. 1931, J. Am. Chem. Soc., 53, 1367. Pauling, L. 1932, J. Am. Chem. Soc., 54, 988. Pearson, R. G. 1969, J. Am. Chem ... Prewitt, C. T.; Shannon, R. D.; Rogers, D. B. 1971, Inorg. Chem., 10, 719. Rao, C. N. R.; Raveau, B. 1998.

  • Principles of Inorganic Materials Design
    By John N. Lalena, David A. Cleary, Olivier Hardouin Duparc

    Cottrell later described a mechanism for crack nucleation involving intersecting slip planes even in the absence of defects (Cottrell 1958). An applied deformation stress concentrates near the tip of a sharp crack, ...

  • Principles of Inorganic Materials Design
    By John N. Lalena, David A. Cleary

    Nakano, M.; Nagayama, H.; Sakuma, T. 2001, JOM, 53, 27. Overney, G.; Zhong, W.; ... Quinten, M.; Kriebig, U. 1986, Surf. ... Zhou, W.; Wiemann, K. J.; Fang, J.; Carpenter, E. E.; O'Connor, C. J. 2001, J. Solid State Chem., 159, 26.

  • Principles of Inorganic Materials Design
    By John N. Lalena, David A. Cleary, Olivier B.M. Hardouin Duparc

    ... they exhibit enantiomorphism (Greenwood and Earnshaw 1997). The other crystalline forms contain interlinked sheets of six-membered rings of tetrahedra. It has been said that more is known about the chemical, structural, physical, ...

  • Principles of Inorganic Materials Design
    By John N. Lalena, David A. Cleary

    Cheremisinoff, N. P. Condensed Encyclopedia of Polymer Engineering Terms, ButterworthHeinemann, Woburn, MA, 2001. De Rome de L'Isle, J. B. L. Essai de Cristallographie, Didot jeune, 1772. Falster, R.; Voronkov, V. V. MRS Bull. 2000, 28.