语言选择
English
首页
科学研究
研究领域
论文成果
专利
著作成果
科研项目
教学研究
教学资源
授课信息
教学成果
获奖信息
招生信息
学生信息
个人主页
我的相册
教师博客
所在单位:
材料科学与工程学院
职称:
研究员
电子邮箱:
ktao@sjtu.edu.cn
教师拼音名称:
Tao Ke
办公地点:
材料D楼435
性别:
男
在职信息:
在职
科学研究
当前位置:
Tao Lab
>>
科学研究
论文成果:
More>>
Efficacy Dependence of Photodynamic Therapy Mediated by Upconversion Nanoparticles: Subcellular Positioning and Irradiation Productivity .Small .2017
Fixed-diameter upconversion nanorods with controllable length and their interaction with cells .Journal of Colloid and Interface Science .2018
Synergistic Targeting and Efficient Photodynamic Therapy Based on Graphene Oxide Quantum Dot-Upconversion Nanocrystal Hybrid Nanoparticles .Small .2018
Multimodal Nanoprobe Based on Upconversion Nanoparticles for Monitoring Implanted Stem Cells in Bone Defect of Big Animal .ACS Biomaterials Science & Engineering .2018
Circumventing Drug Resistance Pathways with a Nanoparticle-Based Photodynamic Method .Nano Letter .2021
Ultrasmall Day-Night Photocatalysts of LnYVO(4):Eu3+ (Ln = Nd, Tm, and Er) Nanoparticles .ACS Applied Materials & Interfaces .2023
Revisiting the factors influencing the magnetic resonance contrast of Gd2O3 nanoparticles .NANOSCALE ADVANCES .2022
Near-Infrared Light-Excited Reactive Oxygen Species Generation by Thulium Oxide Nanoparticles .JOURNAL OF THE AMERICAN CHEMICAL SOCIETY .2022
Modulating cancer-stroma crosstalk by a nanoparticle-based photodynamic method to pave the way for subsequent therapies .Biomaterials .2022
Long-term tri-modal in vivo tracking of engrafted cartilage-derived stem/progenitor cells based on upconversion nanoparticles .Biomolecules .2021
著作成果:
Photonanotechnology for Therapeutics and Imaging (Chapter 6 and Chapter 7) ,2020/05/07
科研项目:
More>>
抗菌义齿技术开发 -2026/11/01
病毒灭活纳米技术 -2024/12/01
振动激励的杀菌纳米材料新技术 -2024/06/01
基于NaEMAb-LnNPs的中药诊治子宫内膜异位症的机制研究 -2023/12/01
SMC-晨星青年学者奖励计划B类 -2016/12/01
基于NaEMAb-LnNPs的中药诊治子宫内膜异位症的机制研究 -2023/12/01
不同形状NaYF4纳米颗粒被细胞吞噬与排出的规律性与机制研究 -2014/12/01
Global challenges research fund collaboration agreement -2020/03/01
灭活病毒纳米材料及其应用研究 -2021/03/01
基于稀土纳米材料的放疗增敏方法研究 -2020/12/01