output
20192025
most citedIon exchange in atomically thin clays and micas

91 citations

11 papers

cond-mat.mtrl-sci2025★ 16 cited

Integrating Machine Learning with Triboelectric Nanogenerators: Optimizing Electrode Materials and Doping Strategies for Intelligent Energy Harves

Guanping Xu, Zirui Zhao, Zhong Lin Wang +1

The integration of machine learning techniques with triboelectric nanogenerators (TENGs) offers a transformative pathway for optimizing energy harvesting technologies. In this stud…

cond-mat.mtrl-sci2022★ 13 cited

Telluride nanocrystals with adjustable amorphous shell thickness and core-shell structure modulation by aqueous cation-exchange

Xinyuan Li, Mengyao Su, Yi-Chi Wang +4

Engineering the structure of core-shell colloidal semiconductor nanoparticles (CSNPs) is attractive due to the potential to enhance photo-induced charge transfer (PICT) and induce…

cond-mat.mtrl-sci2022★ 1 cited

Homologous self-assembled superlattices: What causes their periodic polarity switching? Review, model, and experimental test

Varun Thakur, Dor Benafsha, Yury Turkulets +4

Quantum semiconductor structures are commonly achieved by bandgap engineering that relies on the ability to switch from one semiconductor to another during their growth. Growth of…

physics.class-ph2022★ 33 cited

The expanded Maxwell's equations for a mechano-driven media system that moves with acceleration

Zhong Lin Wang

In classical electrodynamics, by motion for either the observer or the media, it always naturally assumed that the relative moving velocity is a constant along a straight line (e.g…

cond-mat.mes-hall2022

Creating quantum spin chains through edge reconstruction in pure graphene armchair nanoribbons towards ballistic spin transport

Ning Wu, Bang-Gui Liu

It is well-known that ferromagnetism can be realized along the zigzag graphene nanoribbon edges, but the armchair graphene nanoribbon edges (AGNEs) are nonmagnetic. Here, we achiev…

physics.class-ph2022★ 2 cited

Maxwell's equations for a mechano-driven, shape-deformable, charged-media system, slowly moving at an arbitrary velocity field v(r,t)

Zhong Lin Wang

The differential form of the Maxwell's equations was first derived based on an assumption that the media are stationary, which is the foundation for describing the electro-magnetic…