TWISTED PI-ELECTRON SYSTEM CHROMOPHORE COMPOUNDS WITH VERY LARGE MOLECULAR HYPERPOLARIZABILITIES AND RELATED COMPOSITIONS AND DEVICES
申请人:Marks Tobin J.
公开号:US20100273919A1
公开(公告)日:2010-10-28
Unconventional twisted π-electron system electro-optic (EO) chromophores/compounds, compositions and related device structures. Crystallographic analysis of several non-limiting chromophores reveals, for instance, large ring-ring dihedral twist angles and a highly charge-separated zwitterionic structure in the ground state, in both solution phase and solid-state.
Twisted pi-electron system chromophore compounds with very large molecular hyperpolarizabilities and related compositions and devices
申请人:Marks J. Tobin
公开号:US20060237368A1
公开(公告)日:2006-10-26
Unconventional twisted π-electron system electro-optic (EO) chromophores/compounds, compositions and related device structures. Crystallographic analysis of several non-limiting chromophores reveals, for instance, large ring-ring dihedral twist angles and a highly charge-separated zwitterionic structure in the ground state, in both solution phase and solid-state.
Twisted Pi-Electron System Chromophore Compounds with Very Large Molecular Hyperpolarizabilities and Related Compositions and Devices
申请人:Marks Tobin J.
公开号:US20110278512A1
公开(公告)日:2011-11-17
Unconventional twisted π-electron system electro-optic (EO) chromophores/compounds, compositions and related device structures. Crystallographic analysis of several non-limiting chromophores reveals, for instance, large ring-ring dihedral twist angles and a highly charge-separated zwitterionic structure in the ground state, in both solution phase and solid-state.
Twisted π-electron system chromophore compounds with very large molecular hyperpolarizabilities and related compositions and devices
申请人:Northwestern University
公开号:US07968016B2
公开(公告)日:2011-06-28
Unconventional twisted π-electron system electro-optic (EO) chromophores/compounds, compositions and related device structures. Crystallographic analysis of several non-limiting chromophores reveals, for instance, large ring-ring dihedral twist angles and a highly charge-separated zwitterionic structure in the ground state, in both solution phase and solid-state.