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Archives of Biochemistry and Biophysics|March 6, 2008
WITHDRAWN: Generation of F0F1-ATPase nanoarray by Dip-Pen Nanolithography and its application as biosensorXiaolong Liu, Jiachang Yue, Zhenxi ZhangBiochemical and Biophysical Research Communications|October 7, 2008
Using F0F1-ATPase motors as micro-mixers accelerates thrombolysisNing Tao, Jie Cheng, Jiachang YueJournal of Nanoscience and Nanotechnology|February 10, 2009
Fabrication of F0F1-ATPase nanostructure on gold surface through Dip-Pen nanolithographyXiaolong Liu, Jiachang Yue, Gui Yu, et al.Food Chemistry|June 5, 2015
Development of a novel biosensor based on F(0)F(1)-ATPase for the detection of 2-dodecylcyclobutanone in irradiated beefYueliang Zhao, Yiming Ha, Jiachang Yue, et al.Langmuir : the ACS Journal of Surfaces and Colloids|April 21, 2009
Self-assembly of F0F1-ATPase motors and ghostNing Tao, Jie Cheng, Ling Wei, et al.Nanoscale Research Letters|June 3, 2015
Visible Thrombolysis Acceleration of a Nanomachine Powered by Light-Driving F0F1-ATPase MotorXiaoxia Duan, Lifeng Liu, Weijian Jiang, et al.The Journal of Physical Chemistry. B|September 25, 2007
Green and orange CdTe quantum dots as effective pH-sensitive fluorescent probes for dual simultaneous and independent detection of virusesZhengtao Deng, Yun Zhang, Jiachang Yue, et al.Biochemical and Biophysical Research Communications|March 7, 2006
F0F1-ATPase as biosensor to detect single virusXiaolong Liu, Yun Zhang, Jiachang Yue, et al.Bioelectromagnetics|June 5, 2009
Enhancement of the hydrolysis activity of F0F1-ATPases using 60 Hz magnetic fieldsChuanfang Chen, Yuanbo Cui, Jiachang Yue, et al.Chinese Medical Journal|April 10, 2002
Association of the phosphatidylinositol signal pathway with prolonged myocardial ischemiaXiuyun Ding, Jiachang Yue, Shiwen Wang, et al.Pageof 2