[1]
A Highly Sensitive NO2 Gas Sensor Based on CeO2-doped ZnO Heterojunction Nanofibers, Modern Physics Letters B, 2026, (Thi-Nhai Vu, Yu-Jen Hsiao, Chung-Hao Hsu, Kai-Yi Chen, Te-Hua Fanga) [DOI]
[2]
Enhanced CO sensing property based on LaCoO3 perovskite with gold nanoparticles, Ceramics International, 2026, (Thi-Nhai Vu, Te-Hua Fang, Shih-Hong Yang, Yu-Jen Hsiao) [DOI]
[3]
Mechanical responses of nanoporous silicene under uniaxial and biaxial tension: Effects of pore geometry and temperature, Mechanics Research Communications, Volume 154, June 2026, 104685, 2026, (Van-Trung Pham,Thien-Kim Huynh, Le-Hung-Toan Do, Thi-Nhai Vu) [DOI]
[4]
Bauschinger effect on high entropy alloy under cyclic deformation, Intermetallics, Volume 183, August 2025, 2025, (Hoang-Giang Nguyen, Sheng-Joue Young, Thanh-Dung Le, Thi-Nhai Vu, Te-Hua Fang) [DOI]
[5]
Effect of defect on mechanical properties of two-dimensional MoS2 membranes, Physica Scripta, Volume 100, Number 4, 2025, (Van-Trung Pham, Thien-Kim Huynh, Le-Hung-Toan Do and Thi-Nhai Vu) [DOI]
[6]
Effect of nanopore on mechanical characteristics of indium selenide membrane, Journal of the Brazilian Society of Mechanical Sciences and Engineering, volume 47, issue 2, 2025, 2025, (Thi-Nhai Vu, Van-Trung Pham, Duc-Binh Luu, Ngoc-Hai Tran, Pham T. N. Nguyen Ba-Kien Nguyen & Quang-Bang) [DOI]
[7]
Enhanced H2S Gas Sensing Performance of SnO2/BaSnO3 Heterostructures, ECS Journal of Solid State Science and Technology, Volume 13, Number 12, 2025, (Thi-Nhai Vu, Yun-Shen Li, Kuo-Chin Hsu, Yu-Jen Hsiao, Yu-Sheng Lu, Ching-Chien Huang and Te-Hua Fang) [DOI]
[8]
Highly selective H2S detection at room temperature of SnO2 - La0.8Sr0.2Co0.5Ni0.5O3 heterojunction film sensor, Materials Letters, Volume 398, 1 November 2025, 2025, (Thi-Nhai Vu, Po-Chen Liua, Yu-Jen Hsiao, Te-Hua Fang) [DOI]
[9]
Mechanical response of defective AlCoCrFeNi high-entropy alloys: Influence of void geometry and distribution, Physica B: Condensed Matter, 2025, (Thi-Nhai Vu, Van-Trung Pham, Yu-Jen Hsiao, Te-Hua Fang) [DOI]
[10] Effects of temperature, punch angle, and loading velocity on mechanical properties of nanoimprinted FeNiCoCrCux high-entropy alloys, Materials Today Communications, Volume 38, 2024, (Vũ Thị Nhài)
[11] Material deformation mechanism of lamellar twined high–entropy alloys during machining, Modelling and Simulation in Materials Science and Engineering, Volume 32, 2024, (Vũ Thị Nhài)
[12] Effects of microstructure and vibration parameters on mechanical properties of nanoimprinted FeNiCrCoCu high-entropy alloys, Physica B: Condensed Matter, Volume 665, 15, 2023, (Vũ Thị Nhài)
[13] Effects of structure and strain rate on deformation mechanism of twin lamellar Al0.3CoCrFeNi alloys, Journal of Alloys and Compounds, Volume 954, 5, 2023, (Vũ Thị Nhài)
[14] Maintain sort order of grain boundary to investigate the deformation mechanism of CoCuFeNiPd high–entropy alloys, Current Applied Physics, Volume 59, 2023, (Vũ Thị Nhài)
[15] Influences of grain size, temperature, and strain rate on mechanical properties of Al0.3CoCrFeNi high–entropy alloys, Materials Science and Engineering: A, Vol. 858, Issue 144158, 2022, (Vũ Thị Nhài)
[16] Deformation mechanisms and mechanical properties of nanocrystalline CuxNi100−x alloys during indentation using molecular dynamics, Materials Today Communications, Vol 33, 104282, 2022, (Vũ Thị Nhài)
[17] Interfacial strength and deformation mechanism of Ni/Co multilayers under uniaxial tension using molecular dynamics simulation, Materials Today Communications, Vol. 30, 103088, 2021, (Vũ Thị Nhài)