The stability of spontaneous electrical polarization in ferroelectrics is fundamental to many of their current applications, which range from the simple electric cigarette lighter to non-volatile random access memories. Research on nanoscale ferroelectrics reveals that their behaviour is profoundly different from that in bulk ferroelectrics, which could lead to new phenomena with potential for future devices. As ferroelectrics become thinner, maintaining a stable polarization becomes increasingly challenging. On the other hand, intentionally destabilizing this polarization can cause the effective electric permittivity of a ferroelectric to become negative, enabling it to behave as a negative capacitance when integrated in a heterostructure....
Ferroelectrics subject to suitable electric boundary conditions present a steady negative capacitanc...
© 2022 Wiley-VCH GmbHThe phenomenological Landau–Ginzburg–Devonshire model provides a fundamental ba...
International audienceA pressing quest for overcoming Boltzmann tyranny in low-power nanoscale elect...
The stability of spontaneous electrical polarization in ferroelectrics is fundamental to many of the...
The negative capacitance (NC) operation of ferroelectric materials has been originally proposed base...
The Landau theory of phase transitions predicts the presence of a negative capacitance in ferroelect...
The use of ferroelectric negative capacitance (NC) has been proposed as a promising way to reduce th...
The use of ferroelectric negative capacitance (NC) has been proposed as a promising way to reduce th...
The use of ferroelectric negative capacitance (NC) has been proposed as a promising way to reduce th...
We demonstrate room-temperature negative capacitance in a ferroelectric-dielectric superlattice hete...
Harnessing ferroelectric negative capacitance in Hf0.5Zr0.5O2-based thin films is promising for appl...
We demonstrate room-temperature negative capacitance in a ferroelectric–dielectric superlattice hete...
Ferroelectrics subject to suitable electric boundary conditions present a steady negative capacitanc...
Ferroelectrics subject to suitable electric boundary conditions present a steady negative capacitanc...
Ferroelectrics subject to suitable electric boundary conditions present a steady negative capacitanc...
Ferroelectrics subject to suitable electric boundary conditions present a steady negative capacitanc...
© 2022 Wiley-VCH GmbHThe phenomenological Landau–Ginzburg–Devonshire model provides a fundamental ba...
International audienceA pressing quest for overcoming Boltzmann tyranny in low-power nanoscale elect...
The stability of spontaneous electrical polarization in ferroelectrics is fundamental to many of the...
The negative capacitance (NC) operation of ferroelectric materials has been originally proposed base...
The Landau theory of phase transitions predicts the presence of a negative capacitance in ferroelect...
The use of ferroelectric negative capacitance (NC) has been proposed as a promising way to reduce th...
The use of ferroelectric negative capacitance (NC) has been proposed as a promising way to reduce th...
The use of ferroelectric negative capacitance (NC) has been proposed as a promising way to reduce th...
We demonstrate room-temperature negative capacitance in a ferroelectric-dielectric superlattice hete...
Harnessing ferroelectric negative capacitance in Hf0.5Zr0.5O2-based thin films is promising for appl...
We demonstrate room-temperature negative capacitance in a ferroelectric–dielectric superlattice hete...
Ferroelectrics subject to suitable electric boundary conditions present a steady negative capacitanc...
Ferroelectrics subject to suitable electric boundary conditions present a steady negative capacitanc...
Ferroelectrics subject to suitable electric boundary conditions present a steady negative capacitanc...
Ferroelectrics subject to suitable electric boundary conditions present a steady negative capacitanc...
© 2022 Wiley-VCH GmbHThe phenomenological Landau–Ginzburg–Devonshire model provides a fundamental ba...
International audienceA pressing quest for overcoming Boltzmann tyranny in low-power nanoscale elect...