Tian Zhao
机构:Hebei Medical University, Jiangsu University, Tongji University, Beijing Institute of Technology, North China University of Technology, The University of Texas at Dallas, Anhui Medical University, Nankai University, National Medical Products Administration, Chinese Academy of Geological Sciences, China University of Geosciences (Beijing), Hebei University of Science and Technology, Lanzhou Institute of Chemical Physics, Affiliated Hospital of Jiangsu University, Xingtai People's Hospital, Shanghai Tongji Urban Planning and Design Institute, Wuhan Sixth Hospital, Murdoch Children's Research Institute, Hebei Provincial Center for Disease Control and Prevention, Ministry of Education, Hebei Science and Technology Department, University of Chinese Academy of Sciences, PLA Air Force Aviation University, University of Wisconsin–Milwaukee, Chongqing Jiaotong University, Taiyuan University of Technology, Tsinghua University · ORCID:0000-0001-6702-2114
发表论文 182 篇 · 总被引 1532 次 · h-index 22
代表论文
- Adaptive Path Planning for Autonomous Underwater Vehicle (AUV) Based on Spatio-Temporal Graph Neural Networks and Conditional Normalizing Flow Probabilistic Reconstruction (2026 · Algorithms · 被引 1)
- Congo Red DyeDegradation and Biotoxicity Eliminationby a Novel Hybrid Semimembrane Capacitive Deionization (SM-MCDI) DeviceCoupled with Peroxymonosulfate (PMS) (2026 · ACS ES&T Water · 被引 1)
- MachineLearning-Based Threshold Segmentation Methodfor Deriving Methane Hydrate Saturation in Synchrotron Radiation CTImages (2026 · Energy & Fuels)
- Voltage Controlled Tunneling Magnetoresistance in All Antiferromagnetic Tunnel Junctions Based on Noncollinear Antiferromagnet Mn 3 Sn (2026 · Chinese Physics B)
- Engineering Atomic Monodispersed Mn‐O‐Nd Asymmetric Sites in TiO 2 Nanotubes for Low Temperature NH 3 ‐SCR With Exceptional H 2 O/SO 2 Resistance (2026 · Advanced Functional Materials)
- Abstract A073: ONM-421, a pH-responsive polymer-drug conjugate nanoparticle for the antigen-independent delivery of MMAE to solid tumors by exploiting the tumor acidic microenvironment (2026 · Clinical Cancer Research)