Recommended methods to study resistive switching devices

M Lanza, HSP Wong, E Pop, D Ielmini… - Advanced Electronic …, 2019 - Wiley Online Library
Resistive switching (RS) is an interesting property shown by some materials systems that,
especially during the last decade, has gained a lot of interest for the fabrication of electronic …

[HTML][HTML] Atomic force microscopy (AFM) on biopolymers and hydrogels for biotechnological applications—Possibilities and limits

J Joshi, SV Homburg, A Ehrmann - Polymers, 2022 - mdpi.com
Atomic force microscopy (AFM) is one of the microscopic techniques with the highest lateral
resolution. It can usually be applied in air or even in liquids, enabling the investigation of a …

Electronic synapses made of layered two-dimensional materials

Y Shi, X Liang, B Yuan, V Chen, H Li, F Hui, Z Yu… - Nature …, 2018 - nature.com
Neuromorphic computing systems, which use electronic synapses and neurons, could
overcome the energy and throughput limitations of today's computing architectures …

A Fully Printed Flexible MoS2 Memristive Artificial Synapse with Femtojoule Switching Energy

X Feng, Y Li, L Wang, S Chen, ZG Yu… - Advanced Electronic …, 2019 - Wiley Online Library
Realization of memristors capable of storing and processing data on flexible substrates is a
key enabling technology toward “system‐on‐plastics”. Recent advancements in printing …

Nanoscale control of an interfacial metal–insulator transition at room temperature

C Cen, S Thiel, G Hammerl, CW Schneider… - Nature materials, 2008 - nature.com
Abstract Experimental,,,,,, and theoretical, investigations have demonstrated that a quasi-two-
dimensional electron gas (q-2DEG) can form at the interface between two insulators: non …

[图书][B] Conductive atomic force microscopy: applications in nanomaterials

M Lanza - 2017 - books.google.com
The first book to summarize the applications of CAFM as the most important method in the
study of electronic properties of materials and devices at the nanoscale. To provide a global …

Scanning probe microscopy for advanced nanoelectronics

F Hui, M Lanza - Nature electronics, 2019 - nature.com
As the size of electronic devices continues to shrink, characterization methods capable of
precisely probing localized properties become increasingly important. Scanning probe …

Dielectric Properties of Ultrathin CaF2 Ionic Crystals

C Wen, AG Banshchikov, YY Illarionov… - Advanced …, 2020 - Wiley Online Library
Mechanically exfoliated 2D hexagonal boron nitride (h‐BN) is currently the preferred
dielectric material to interact with graphene and 2D transition metal dichalcogenides in …

On the use of two dimensional hexagonal boron nitride as dielectric

F Hui, C Pan, Y Shi, Y Ji, E Grustan-Gutierrez… - Microelectronic …, 2016 - Elsevier
Recent advances in materials science allowed the incorporation of advanced two
dimensional (2D) materials in electronic devices. For example, field effect transistors (FETs) …

Measurements of the electrical conductivity of monolayer graphene flakes using conductive atomic force microscopy

S Lim, H Park, G Yamamoto, C Lee, JW Suk - Nanomaterials, 2021 - mdpi.com
The intrinsic electrical conductivity of graphene is one of the key factors affecting the
electrical conductance of its assemblies, such as papers, films, powders, and composites …