
Xin Shi Lab @KULeuven
We are a new lab started in October 2023 at KU Leuven. In our lab, we learn from nature to build motors and machines that mimic the critical functions of nature's motor proteins at the nanoscale. scroll down to read more about our research (or click here)
Xin Shi - Google Scholar
KU Leuven - Cited by 950 - Nanopores - Nanomachines - Single-molecule sensing - Single-molecule microscopy
Prof Xin Shi - Google Scholar
Ultrasensitive and specific clustered regularly interspaced short palindromic repeats empowered a plasmonic fiber tip system for amplification-free monkeypox virus detection … Y Chen, Z …
Dr. X. Shi - TU Delft
Active delivery of single DNA molecules into a plasmonic nanopore for label-free optical sensing Xin Shi / Daniel V. Verschueren / Cees Dekker
A DNA turbine powered by a transmembrane potential across a …
2023年10月26日 · Here, we experimentally demonstrate rationally designed nanoscale DNA origami turbines with three chiral blades. These DNA nanoturbines are 24–27 nm in height and diameter and can utilize...
Xin SHI | PostDoc Position | PhD | Delft University of Technology ...
Dr. Xin Shi is a post-doctoral researcher in Cees Dekker Lab at the Delft University of Technology. He received his PhD degree from East China University of Science and Technology...
Xin Shi - Google Scholar
Center for Big Data Engineering Technology, Shanghai Jiao Tong University - Cited by 626 - Random matrix theory for high-dimensional data analysis - Artificial intelligence for power system
Xin Shi - Google 学术搜索
King Abdullah University of Science and Technology - 引用次数:1,234 次
X-Team - Xin Shi (史欣) - IHEP
Associate Professor, Institute of High Energy Physics CAS, 2015 – present. Postdoctoral Research Associate, Purdue University, 2014 – 2015. Postdoctoral Research Fellow, National Taiwan University, 2011 – 2013. “Physics II: Heat/Electromagnetism”, Department of Physics, Cornell University, 2008.
Publication - Xin Shi Lab
X. Shi, D. Verschueren, and C. Dekker, Active delivery of single DNA molecules into a plasmonic nanopore for label-free optical sensing. Nano Letters. 18 (12), 8003–8010 (2018)
- 某些结果已被删除