papers

Publications (11)

physics.app-ph2021

Spatial Structure Engineering in Enhancing Performance of Mosaic Electrocatalysts

Yuting Luo, Sum Wai Chiang, Lei Tang +5

Understanding the mechanism and developing strategies toward efficient electrocatalysis at gas-liquidsolid interfaces are important yet challenging. In the past decades, researcher…

physics.data-an2021

A deep learned nanowire segmentation model using synthetic data augmentation

Binbin Lin, Nima Emami, David A Santos +3

Automatized object identification and feature analysis of experimental image data are indispensable for data-driven material science; deep-learning-based segmentation algorithms ha…

physics.chem-ph2021

Stabilized Hydroxide Mediated Nickel-Based Electrocatalysts for High Current Density Hydrogen Evolution in Alkaline Media

Yuting Luo, Zhiyuan Zhang, Fengning Yang +5

Large scale production of hydrogen by electrochemical water splitting is considered as a promising technology to address critical energy challenges caused by the extensive use of f…

cond-mat.mtrl-sci2021

Catalyst-Free Growth of Atomically-thin Bi2O2Se Nanoribbons for High-performance Electronics and Optoelectronics

Usman Khan, Lei Tang, Baofu Ding +6

One-dimensional (1D) materials have attracted significant research interest due to their unique quantum confinement effects and edge-related properties. Atomically thin 1D nanoribb…

cond-mat.mtrl-sci2020

Modulating Electronic Structure of Monolayer Transition Metal Dichalcogenides by Substitutional Nb-Doping

Lei Tang, Runzhang Xu, Junyang Tan +9

Modulating electronic structure of monolayer transition metal dichalcogenides (TMDCs) is important for many applications and doping is an effective way towards this goal, yet is ch…

cond-mat.mtrl-sci2020

Unsaturated Single Atoms on Monolayer Transition Metal Dichalcogenides for Ultrafast Hydrogen Evolution

Yuting Luo, Shuqing Zhang, Haiyang Pan +14

Large scale implementation of electrochemical water splitting for hydrogen evolution requires cheap and efficient catalysts to replace expensive platinum. Molybdenum disulfide is o…

cond-mat.mtrl-sci2022

A Ta-TaS2 monolithic catalyst with robust and metallic interface for superior hydrogen evolution

Qiangmin Yu, Zhiyuan Zhang, Siyao Qiu +11

The use of highly active and robust catalysts is crucial for producing green hydrogen by water electrolysis as we strive to achieve global carbon neutrality. Noble metals like plat…

physics.app-ph2020

High-Throughput Production of Cheap Mineral-Based 2D Electrocatalysts for High-Current-Density Hydrogen Evolution

Chi Zhang, Yuting Luo, Junyang Tan +5

The high-throughput scalable production of cheap, efficient and durable electrocatalysts that work well at high current densities demanded by industry is a great challenge for the…

physics.chem-ph2022

Recent Advances in Design of Electrocatalysts for High-Current-Density Water Splitting

Yuting Luo, Zhiyuan Zhang, Manish Chhowalla +1

Electrochemical water splitting technology for producing "green hydrogen" is important for the global mission of carbon neutrality. Electrocatalysts with decent performance at high…

physics.chem-ph2021

A durable and efficient electrocatalyst for saline water splitting with current density exceeding 2000 mA cm -2

Fengning Yang, Yuting Luo, Qiangmin Yu +7

Water electrolysis is promising for industrial hydrogen production to achieve a sustainable and green hydrogen economy, but the high cost of the technology limits its market share.…

physics.app-ph2020

Vertical CVD Growth of Highly Uniform Transition Metal Dichalcogenides

Lei Tang, Tao Li, Yuting Luo +5

Two-dimensional (2D) transition metal dichalcogenides (TMDCs) have attracted great attention due to their physical and chemical properties that make them promising in electronics a…