Organic molecular ferroelectrics are highly desirable due to their numerous advantages. In the present work, a thick film of diisopropylammonium bromide organic molecular ferroelectric is fabricated on the ITO/glass substrate. The grown film shows preferential orientation along the c-axis with a ferroelectric transition at 419 K. The piezoresponse force microscopic measurements are done in a dual ac resonance tracking mode for its switching characteristics. The amplitude and phase images of the oppositely written domain patterns exhibit a clear contrast with 180° phase difference. The dynamical spectroscopic studies reveal a butterfly loop in amplitude and hysteretic character of the phase which are the expected characteristics features of ...
Diisopropylammonium bromide (DIPAB) is an organic molecular ferroelectric crystal processed from aqu...
Potential ferroelectricity in charge-transfer organic materials is often masked by the intrinsic con...
The ferroelectric and piezoelectric properties of newly synthesized polymer systems have been studie...
Molecular ferroelectrics are highly desirable for their easy and environmentally friendly processing...
Diisopropylammonium bromide (DIPAB) is an organic molecular ferroelectric crystal that switches its ...
Compared with inorganic ferroelectrics, organic ferroelectrics have advantages of low cost and low t...
Ferroelectric molecular compounds present great advantages for application in electronics because th...
Compared to inorganic materials, organic materials are environmentally friendly, flexible, and often...
A comparative analysis of crystal structure, Raman spectra, and dielectric hysteresis loops was carr...
We have investigated the ferroelectric polarization switching properties of trialkylbenzene-1,3,5 tr...
Since their discovery, ferroelectric materials have shown excellent dielectric responses, pyroelectr...
Crystallization is a key for ferroelectricity which is a collective behavior of microscopic electric...
Ionic plastic crystals are part of an emerging class of hybrid organic–inorganic ferroelectrics. The...
ConspectusAlthough the first ferroelectric discovered in 1920 is Rochelle salt, a typical molecular ...
Diisopropylammonium bromide (DIPAB) is an organic molecular ferroelectric crystal processed from aqu...
Potential ferroelectricity in charge-transfer organic materials is often masked by the intrinsic con...
The ferroelectric and piezoelectric properties of newly synthesized polymer systems have been studie...
Molecular ferroelectrics are highly desirable for their easy and environmentally friendly processing...
Diisopropylammonium bromide (DIPAB) is an organic molecular ferroelectric crystal that switches its ...
Compared with inorganic ferroelectrics, organic ferroelectrics have advantages of low cost and low t...
Ferroelectric molecular compounds present great advantages for application in electronics because th...
Compared to inorganic materials, organic materials are environmentally friendly, flexible, and often...
A comparative analysis of crystal structure, Raman spectra, and dielectric hysteresis loops was carr...
We have investigated the ferroelectric polarization switching properties of trialkylbenzene-1,3,5 tr...
Since their discovery, ferroelectric materials have shown excellent dielectric responses, pyroelectr...
Crystallization is a key for ferroelectricity which is a collective behavior of microscopic electric...
Ionic plastic crystals are part of an emerging class of hybrid organic–inorganic ferroelectrics. The...
ConspectusAlthough the first ferroelectric discovered in 1920 is Rochelle salt, a typical molecular ...
Diisopropylammonium bromide (DIPAB) is an organic molecular ferroelectric crystal processed from aqu...
Potential ferroelectricity in charge-transfer organic materials is often masked by the intrinsic con...
The ferroelectric and piezoelectric properties of newly synthesized polymer systems have been studie...