Flexible memory can enable industrial, automobile, space, and smart grid centered <br>harsh/extreme environment focused electronics application (s) for enhanced operation, <br>safety, and monitoring where bent or complex shaped infrastructures are common and state-<br>of-the-art rigid electronics cannot be deployed. Therefore, we report on the physical-<br>mechanical-electrical characteristics of a flexible ferroelectric memory based on lead <br>zirconium titanate as a key memory material and flexible version of bulk mono-crystalline <b>...</b
In this paper, the electromechanical behavior of lead zirconate-titanate ceramics (P51) has been cha...
This book provides comprehensive coverage of the materials characteristics, process technologies, an...
The discovery of ferroelectricity in HfO2 and ZrO2 based dielectrics enabled the introduction of the...
Flexible memory devices represent an emerging technological goal for information storage and data pr...
Flexible non-volatile memories have received much attention as they are applicable for portable smar...
Abstract: Ferroelctrics are technologically important materials, particularly for their applications...
Metal–ferroelectric–metal (MFM) capacitors on flexible substrates are promising for flexible nonvola...
Flexible ceramics subsume all the functional properties of bulk ceramics, but in a format that has b...
The low storage density of ferroelectric thin film memory currently limits the further application o...
Future flexible electronic systems require memory devices combining low-power operation and mechanic...
Recently, significant progress has been made in integrating ferroelectric materials and semiconducto...
Flexible, fatigue-free, large-scale, and nonvolatile memory is an emerging technological goal in a v...
Ferroelectricity is very attractive for nonvolatile memories since it allows non-volatility paired w...
Ferroelectrics are utilized in a myriad of technological applications including vibration damping du...
Abstract: The year of 2021 is the 100th anniversary of the first publication of ferroelectric behavi...
In this paper, the electromechanical behavior of lead zirconate-titanate ceramics (P51) has been cha...
This book provides comprehensive coverage of the materials characteristics, process technologies, an...
The discovery of ferroelectricity in HfO2 and ZrO2 based dielectrics enabled the introduction of the...
Flexible memory devices represent an emerging technological goal for information storage and data pr...
Flexible non-volatile memories have received much attention as they are applicable for portable smar...
Abstract: Ferroelctrics are technologically important materials, particularly for their applications...
Metal–ferroelectric–metal (MFM) capacitors on flexible substrates are promising for flexible nonvola...
Flexible ceramics subsume all the functional properties of bulk ceramics, but in a format that has b...
The low storage density of ferroelectric thin film memory currently limits the further application o...
Future flexible electronic systems require memory devices combining low-power operation and mechanic...
Recently, significant progress has been made in integrating ferroelectric materials and semiconducto...
Flexible, fatigue-free, large-scale, and nonvolatile memory is an emerging technological goal in a v...
Ferroelectricity is very attractive for nonvolatile memories since it allows non-volatility paired w...
Ferroelectrics are utilized in a myriad of technological applications including vibration damping du...
Abstract: The year of 2021 is the 100th anniversary of the first publication of ferroelectric behavi...
In this paper, the electromechanical behavior of lead zirconate-titanate ceramics (P51) has been cha...
This book provides comprehensive coverage of the materials characteristics, process technologies, an...
The discovery of ferroelectricity in HfO2 and ZrO2 based dielectrics enabled the introduction of the...