Zobrazeno 1 - 7
of 7
pro vyhledávání: '"Lingze Zhang"'
Autor:
Ya-Qiong Yan, Jia-Qi Wang, Lingze Zhang, Pei-Pei Yang, Xin-Wei Ye, Cong Liu, Da-Yong Hou, Wen-Jia Lai, Jie Wang, Xiang-Zhong Zeng, Wanhai Xu, Lei Wang
Publikováno v:
ACS Nano. 17:1381-1392
Autor:
Yi-Jing Li, Lingze Zhang, Pei-Pei Yang, Kuo Zhang, Xue-Feng Gong, Da-Yong Hou, Hui Cao, Xiao-Chun Wu, Ruiwu Liu, Kit S. Lam, Lei Wang
Publikováno v:
Nano Letters. 22:8076-8085
Nanomaterials (NMs) inevitably adsorb proteins in blood and form "protein corona" upon intravenous administration as drug carriers, potentially changing the biological properties and intended functions. Inspired by anti-adhesion properties of natural
Autor:
Yi-Jing Li, Lingze Zhang, Ming-Hao Pang, Pei-Pei Yang, Lu-Ming Guo, Kuo Zhang, Da-Yong Hou, Lei Wang, Hao Wang, Hui Cao
Publikováno v:
Chinese Chemical Letters. :108530
Autor:
Hengbo Huang, Youshen Wu, Peng Tang, Yiming Liu, Zhenhai Gan, Zeying Liu, Lingze Zhang, Daocheng Wu, Jiajun Liu, Ya Wang
Publikováno v:
Biomaterials. 230
To obtain magnetic nanoparticles with high magnetic heating efficiency and rapid in vivo clearance, this study utilized an improved linear response theory model to theoretically simulate the specific absorption rate (SAR) value versus the particle si
Autor:
Yongxing Du1, Lingze Zhang2, Lulu Sang1, Daocheng Wu2 wudaocheng@mail.xjtu.edu.cn, Du, Yongxing1 (AUTHOR), Zhang, Lingze2 (AUTHOR), Sang, Lulu1 (AUTHOR), Wu, Daocheng2 (AUTHOR)
Publikováno v:
Technology & Health Care. 2016 Supplement 2, Vol. 24, pS675-S682. 8p.
Autor:
Ya Wang, Peng Tang, Daocheng Wu, Lingfeng Liu, Zhenhai Gan, Zeying Liu, Lingze Zhang, Jiajun Liu, Xiao Peng, Shihong Shen
Publikováno v:
Chemical Engineering Journal. 399:125553
To improve the recycling efficiency of magnetic recycling system, magnetothermally responsive composite submicron particles (CFMNs@PEG CSPs) were designed and prepared for recyclable catalytic applications, in which poly(ethylene glycol) gel was used
Publikováno v:
Nanoscale. 6:8681-8693
To improve the metal-enhanced fluorescence (MEF) effect of nanogolds (AuNPs) and accurately detect specific DNA sequences via DNA hybridization, novel hybrid magnetic nanoparticles/nanogold clusters (HMNCs) were designed based on finite-difference ti