A new approach for the molecular design of highly efficient nonlinear optical organic crystals is proposed by introducing substituents that form σ‐holes on both nonlinear optical cationic chromophores and aromatic anions. Introducing chlorinated substituents, in which a relatively positive σ‐hole and a negative belt coexist, provides selective reduction capability of specific π–π intermolecular interactions and simultaneous multiple secondary bonding capabilities. This leads to a crystalline state with enhanced first‐order hyperpolarizability βcrystal of chromophores that favors parallel chromophore alignment and suppression of molecular vibrations, which are optimal characteristics for electro‐optic and nonlinear optical applications, incl...
Highly efficient nonlinear optical organic crystals are very attractive for various photonic applica...
Organic π-conjugated crystals with second-order optical nonlinearity are considerably attractive mat...
In this study, we develop new organic benzothiazolium crystals possessing very large off-diagonal op...
A new approach for the molecular design of highly efficient nonlinear optical organic crystals is pr...
This study reports on highly efficient nonlinear optical ionic quinolinium crystals with various aro...
Newly designed halogenated organic quinolinium crystals proposed in this work provide fully optimize...
In article number 1805257, Fabian Rotermund, O‐Pil Kwon, and co‐workers report new organic three‐com...
Terahertz (THz) technology is an emerging field that is promising for future applications. Nonlinear...
New molecular salt crystals based on linear‐shaped polymer‐like cation–anion assembly exhibiting ext...
Fluorinated electro‐optic crystals with state‐of‐the‐art second‐order nonlinear optical response and...
This work reports a series of new organic electro-optic salt crystals possessing unusual orthogonal ...
We present two D-π-A organic cationic core structures leading to highly efficient nonlinear optical ...
Enhanced terahertz (THz) wave generation is demonstrated in nonlinear organic crystals through refra...
Organic nonlinear optical salt crystals are widely used as efficient broadband THz generators. Altho...
Highly efficient nonlinear optical organic crystals are very attractive for various photonic applica...
Highly efficient nonlinear optical organic crystals are very attractive for various photonic applica...
Organic π-conjugated crystals with second-order optical nonlinearity are considerably attractive mat...
In this study, we develop new organic benzothiazolium crystals possessing very large off-diagonal op...
A new approach for the molecular design of highly efficient nonlinear optical organic crystals is pr...
This study reports on highly efficient nonlinear optical ionic quinolinium crystals with various aro...
Newly designed halogenated organic quinolinium crystals proposed in this work provide fully optimize...
In article number 1805257, Fabian Rotermund, O‐Pil Kwon, and co‐workers report new organic three‐com...
Terahertz (THz) technology is an emerging field that is promising for future applications. Nonlinear...
New molecular salt crystals based on linear‐shaped polymer‐like cation–anion assembly exhibiting ext...
Fluorinated electro‐optic crystals with state‐of‐the‐art second‐order nonlinear optical response and...
This work reports a series of new organic electro-optic salt crystals possessing unusual orthogonal ...
We present two D-π-A organic cationic core structures leading to highly efficient nonlinear optical ...
Enhanced terahertz (THz) wave generation is demonstrated in nonlinear organic crystals through refra...
Organic nonlinear optical salt crystals are widely used as efficient broadband THz generators. Altho...
Highly efficient nonlinear optical organic crystals are very attractive for various photonic applica...
Highly efficient nonlinear optical organic crystals are very attractive for various photonic applica...
Organic π-conjugated crystals with second-order optical nonlinearity are considerably attractive mat...
In this study, we develop new organic benzothiazolium crystals possessing very large off-diagonal op...