Linuo Zhou
Fudan University
32 Papers
210 Citations
Linuo Zhou is an academic researcher from Fudan University. The author has contributed to research in topics: Electrorheological fluid & Dielectric. The author has an hindex of 14, co-authored 31 publications.
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Papers
Contact angle determined by spontaneous dynamic capillary rises with hydrostatic effects: Experiment and theory
TL;DR: In this article, the authors investigate spontaneous dynamic capillary rises of liquids and derive new equations to describe the relation between the liquid front height and time, which enables them to experimentally measure contact angles of capillary tube surfaces directly.
92
Saturated Orientational Polarization of Polar Molecules in Giant Electrorheological Fluids
TL;DR: The calculation of local electric fields using the finite element approach shows that the local electric field can cause an orientational polarization of the polar molecules within the two outer shells between the two PMER particles.
51
Preparation and electrorheological properties of triethanolamine-modified TiO2
J.G. Cao,Ming Shen,Linuo Zhou +2 more
TL;DR: The high molecular dielectric dipole moment of doping material is promising to improve the electrorholegical (ER) effect as mentioned in this paper, and triethanolamine (3.48)-modified TiO 2 has good ER properties.
49
Easier operation and similar power of 10 g monofilament test for screening diabetic peripheral neuropathy
Qi Zhang,Na Yi,Siying Liu,Hangping Zheng,Xiaona Qiao,Qian Xiong,Xiaoxia Liu,Shuo Zhang,Jie Wen,Hongying Ye,Linuo Zhou,Yiming Li,Renming Hu,Bin Lu +13 more
TL;DR: SWME testing of 3 sites on each foot may be sufficient to screen for diabetic neuropathy and there were no significant differences in the effectiveness of 3-, 4- and 10-site SWME testing for diabetic peripheral neuropathy screening.
29
Polar-molecules-driven enhanced colloidal electrostatic interactions and their applications in achieving high active electrorheological materials
TL;DR: In this paper, a class of colloidal electrorheological (ER) fluids, in which suspended TiO2 particles were synthesized by a sol-gel method and modified by 1,4-butyrolactone molecules with a permanent molecular dipole moment of 4.524 D.