25 papers · ranked by Valyu relevance
Nicolas Mounet, Marco Gibertini, Philippe Schwaller, Davide Campi + 7 more
'Andrius Merkys' 'Antimo Marrazzo' 'Thibault Sohier' 'Ivano E. Castelli' 'Andrea Cepellotti' 'Giovanni Pizzi' 'Nicola Marzari'] We search for novel two-dimensional materials that can be easily exfoliated from their parent compounds. Starting from 108423 unique, experimentally known three-dimensional compounds we…
Sohail Ahmed, Jiabao Yi
Two-dimensional (2D) materials have attracted extensive interest due to their excellent electrical, thermal, mechanical, and optical properties. Graphene has been one of the most explored 2D materials. However, its zero band gap has limited its applications in electronic devices. Transition metal dichalcogenide (TMDC)…
Pranay Ranjan, Snehraj Gaur, Himanshu Yadav, Ajay B. Urgunde + 6 more
'Vikas Singh' 'Avit Patel' 'Kusum Vishwakarma' 'Deepak Kalirawana' 'Ritu Gupta' 'Prashant Kumar'] Quantum flatland i.e., the family of two dimensional (2D) quantum materials has become increscent and has already encompassed elemental atomic sheets (Xenes), 2D transition metal dichalcogenides (TMDCs), 2D metal…
Wenjun Zhang, Zhikun Yao, Lee Burton
In this paper we investigate the relationship between the conductivity effective mass and exfoliation energy of materials to assess whether automatic sampling of the electron band structure can predict the presence of and ease of separating chemically bonded layers. We assess 22,976 materials from the Materials Project…
Oliver Dubnack, Frank A. Müller, Rafik Addou
The possibility of producing stable thin films, only a few atomic layers thick, from a variety of materials beyond graphene has led to two-dimensional (2D) materials being studied intensively in recent years. By reducing the layer thickness and approaching the crystallographic monolayer limit, a variety of unexpected…
Neeraj Goel, Rahul Kumar
Title: Highlights 1. Extensively discussed the physics of various two-dimensional materials enabling them to fabricate smart devices. 2. Statistical and quantum physics for understanding the functioning of smart electronic devices with strategies for improving their performance. 3. New advancement in device…
Paolo Negro, Domenica Scarano, Federico Cesano
Even before graphene was isolated (2004), many experiments established the existence of monomolecular layers at interfaces and the formation of transferable molecular monolayers on solids. These studies also produced ultrathin inorganic films (or molecular coverages) measuring a few atomic layers in thickness.…
Mohammad Hassan Kalantari, Xian Zhang, Gyaneshwar P. Srivastava
In recent decades, two-dimensional materials (2D) such as graphene, black and blue phosphorenes, transition metal dichalcogenides (e.g., WS2 and MoS2), and h-BN have received illustrious consideration due to their promising properties. Increasingly, nanomaterial thermal properties have become a topic of research. Since…
Jun Zhou, Lei Shen, Miguel Dias Costa, Kristin A. Persson + 5 more
'Shyue Ping Ong' 'Patrick Huck' 'Yunhao Lu' 'Xiaoyang Ma' 'Yuan Ping Feng'] Two‐dimensional (2D) materials have been a hot research topic in the last decade, due to novel fundamental physics in the reduced dimension and appealing applications. Systematic discovery of functional 2D materials has been the focus of many…
Fengyi Pang, Pin Zhao, Hyeon Yeong Lee, Dae‐Jin Kim + 3 more
'Yong Soo Cho' 'Sang‐Woo Kim'] Title: Abstract The emergence of two-dimensional (2D) materials has catalyzed significant advancements in the fields of piezotronics and piezo-phototronics, owing to their exceptional mechanical, electronic, and optical properties. This review provides a comprehensive examination of key…
Authors not listed
MXene is a two-dimensional (2D) transition metal carbide, nitride, and carbonitride, has attracted significant attention for energy storage and conversion due to their metallic conductivity, high hydrophilicity, and tunable surface chemistry. This review provides a thorough examination of MXenes, tracing their…
Yuqi Song, Edirisuriya M. Dilanga Siriwardane, Yong Zhao, Jianjun Hu
Two dimensional (2D) materials have emerged as promising functional materials with many applications such as semiconductors and photovoltaics because of their unique optoelectronic properties. While several thousand 2D materials have been screened in existing materials databases, discovering new 2D materials remains to…
Asha Yadav, Carlos Mera Acosta, Gustavo M. Dalpian, Oleksandr I. Malyi
'Oleksandr I. Malyi'] The successful exfoliation of graphene from graphite has brought significant attention to predicting new two-dimensional (2D) materials that can be realized experimentally. As a consequence, firstprinciples studies of novel 2D materials become a routine, with thousands of papers published every…
Ahsan Javed, Muhammad Ashraf Shaheen, Muhammad Shahbaz, Muhammad Ramzan + 3 more
The rapid development of two-dimensional (2D) materials has reshaped modern nanoscience, offering properties that differ fundamentally from their bulk counterparts. As experimental discovery accelerates, the need for reliable computational techniques has become increasingly important. Within the framework of density…
Sherif Tawfik, Olexandr Isayev, Catherine Stampfl, Joseph Shapter + 2 more
There are now, in principle, a limitless number of hybrid van der Waals heterostructures that can be built from the rapidly growing number of two-dimensional layers. The key question is how to explore this vast parameter space in a practical way. Computational methods can guide experimental work however, even the most…
Yukai Zhou, Jia-Han Zhang, Songlin Li, Hao Qiu + 5 more
'Pengfei Wang' 'Weiqiang Zhang' 'Guanggui Cheng'] Recently, there has been an increasing consumption of fossil fuels such as oil and natural gas in both industrial production and daily life. This high demand for non-renewable energy sources has prompted researchers to investigate sustainable and renewable energy…
Tomáš Rauch, Miguel A. L. Marques, Silvana Botti
The electronic band structures of two-dimensional materials are significantly different from those of their bulk counterparts, due to quantum confinement and strong modifications of electronic screening. An accurate determination of electronic states is a prerequisite to design electronic or optoelectronic applications…
Sherif Tawfik, Olexandr Isayev, Catherine Stampfl, Joseph Shapter + 2 more
There are now, in principle, a limitless number of hybrid van der Waals heterostructures that can be built from the rapidly growing number of two-dimensional layers. The key question is how to explore this vast parameter space in a practical way. Computational methods can guide experimental work however, even the most…
Dali Ji, Yunah Lee, Yuta Nishina, Kazuhide Kamiya + 8 more
Materials in 2-dimensional (2D) form often show remarkable properties and unexplored scientific phenomena compared to their bulk form. Layered, van der Waals (vdW) materials have an obvious 2D structure, whereas non-vdW materials have no preference to obtain 2D form. This severely limits the number of currently…
Dali Ji, Yunah Lee, Yuta Nishina, Kazuhide Kamiya + 10 more
Bottom-up electrochemical synthesis of atomically thin materials is desirable yet challenging, especially for non-van der Waals (vdW) materials. Thicknesses below few nm have not been reported yet, posing the question how thin can non-vdW materials be electrochemically synthesized? This is important as materials with…
Jack Maughan, Harneet Kaur, Lucy Prendeville, Tian Carey + 6 more
Two-dimensional boron offers unique advantages in bone tissue engineering, unlocking capabilities that conventional additives struggle to achieve. In this study, we leverage the 2D morphology and intrinsic bioactivity of boron nanoplatelets, incorporated into collagen-based scaffolds, to simultaneously achieve…
Ariel J. Ben-Sasson, Joseph Watson, William Sheffler, Matthew Camp Johnson + 13 more
Proteins that assemble into ordered two-dimensional arrays such as S-layers^1,2^ and designed analogues^3–5^ have intrigued bioengineers,^6,7^ but with the exception of a single lattice formed through non-rigid template streptavidin linkers,^8^ they are constituted from just one protein component. For modulating…
Jenny Sülzle, Wayne Yang, Yuta Shimoda, Nathan Ronceray + 3 more
Two-dimensional (2D) materials offer potential as substrates for biosensing devices, as their properties can be engineered to tune interactions between the surface and biomolecules. Yet, not many methods can measure these interactions in a liquid environment without introducing labeling agents such as fluorophores. In…
RT Jayanth, Rebecca Duquette, Shanmukh Kutagulla, Sabrina Pietrosemoli Salazar + 7 more
Two-dimensional (2D) electronic materials hold immense promise for next-generation bio/neuro-electronic interfaces, but their biocompatibility has remained uncertain due to conflicting reports from studies focused on exfoliated flakes and suspensions. In this work, we present a comprehensive in vitro evaluation of…
Jack Maughan, Ian Woods, Cian O’Connor, Pablo Quintana-Sarti + 8 more
Neural interfacing materials must deliver exceptional electrochemical performance, while integrating safely with the central nervous system. In this study we develop PolyGraph, a flexible, conductive, and biocompatible graphene-polycaprolactone (PCL) nanocomposite designed to strike this balance, which enables…