Breakthrough in Memory Technology: Next-Generation Optoelectronic Memory with Tellurene
Researchers from Dongguk University developed a novel optoelectronic memory device that addresses the issues of conventional floating-gate nonvolatile memory devices.
Floating-gate (FG) nonvolatile memory technology has witnessed rapid development in recent years, offering several advantages in areas like the Internet of Things, multilevel data storage, and next-generation flash memory. Despite this progress, critical challenges such as reducing memory cell size and power consumption are still not solved.
A promising solution to these challenges lies in optoelectronic memory (OEM) devices, which can convert light to electricity and vice versa, based on two-dimensional (2D)
To address these problems, a team of researchers from Dongguk University,
The researchers fabricated the OEM device by stacking a few layers of ReS2 on top of a hBN layer followed by a 2D Te FG, all on a silicon dioxide substrate. Tests revealed that the ReS2/hBN/2D Te vdWh device exhibits exceptional long-term stability, a high on/off switching ratio of the order of 106, and impressive data retention, owing to the excellent optoelectrical properties of ReS2 and 2D Te. Moreover, it also demonstrated a broad absorption spectrum extending from the visible to near-infrared region at room temperature.
Expanding on the results,
"Our research marks a significant milestone in multi-bit optoelectronic memory technology, holding great potential in various applications, including artificial intelligence systems, cloud computing, and broadband optical programmability for digital circuits," concludes
Reference
Title of original paper: 2D van der Waals Heterostructure with Tellurene Floating-Gate for
Journal: ACS Nano
DOI: https://doi.org/10.1021/acsnano.3c08567
Contact:
Sunggeun Cho
[email protected]
82 2-2260-3069
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SOURCE Dongguk University
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