2011 to 2000 Adjunct Research Assistant ProfessorSouthern Illinois University at Edwardsville
May 2012 to May 2012 InstructorSouthern Illinois University at Edwardsville
Sep 2011 to Nov 2011 Co-Instructor, Advanced Organic Chemistry, for graduate studentsUniversity of California Riverside Riverside, CA 2008 to 2011 MentorDepartment of Bioengineering, University of California Riverside, CA 2006 to 2011 Postdoctoral Research FellowCollege of Chemistry and Molecular Engineering
Sep 2000 to 2005 Research AssistantPeking University
Mar 2002 to May 2002 Teaching Assistant
Education:
Peking University 2005 Ph.D. in Polymer Chemistry and Engineering
Skills:
Polymer synthesis of acrylic polymer and characterization: GPC; TGA; DSC; DMA; Rheology; Polymer blend; WAXS; SAXS; Tensile testing. Surface coating and modification; self-assembly monolayer (SAM)
Us Patents
High-Sensitive Fluorescent Energy Transfer Assay Using Fluorescent Amino Acids And Fluoresent Proteins
The disclosure provides method and composition utilizing fluorescent amino acids and endogenous fluorescent proteins comprising a moiety capable of undergoing FRET. The methods and compositions of the disclosure are useful in analyzing protein structure and function, and screening molecular inhibitors.
Method For Continuous Growth Of Water-Soluble Magnetic Nanomaterials
- Jackson MS, US Yongfeng Zhao - Edwardsville IL, US
Assignee:
Jackson State University - Jackson MS
International Classification:
C01G 49/08 C01G 49/00 H01F 1/36
Abstract:
Embodiments of a method for synthesizing water-soluble metal oxide nanoparticles are disclosed. In one embodiment, the method includes heating a first reaction mixture at a predetermined temperature for a predetermined time duration with continuous stirring to obtain a second reaction mixture that comprises water-soluble metal oxide nanoparticles of a first size. The first reaction mixture includes a reactant and a polyol. The method further includes adding a first predetermined amount of the reactant to the second reaction mixture to obtain a third reaction mixture. The method further includes heating the third reaction mixture at the predetermined temperature for the predetermined time duration with continuous stirring to obtain a fourth reaction mixture comprising water-soluble metal oxide nanoparticles of a second size. The reactant is Fe(acac)and the polyol is diethylene glycol (DEG) for synthesizing water-soluble iron oxide nanoparticles.
High-Sensitive Fluorescent Energy Transfer Assay Using Fluorescent Amino Acids And Fluorescent Proteins
- Oakland CA, US Yang SONG - Riverside CA, US Yongfeng ZHAO - Riverside CA, US Yan LIU - Riverside CA, US
International Classification:
G01N 33/542 C07K 7/06 C07K 14/00
Abstract:
The disclosure provides method and composition utilizing fluorescent amino acids and fluorescent proteins comprising a moiety capable of undergoing FRET. The methods and compositions of the disclosure are useful in analyzing protein structure and function, and screening molecular inhibitors.
High-Sensitive Fluorescent Energy Transfer Assay Using Fluorescent Amino Acids And Fluoresent Proteins
- Oakland CA, US Yang Song - Riverside CA, US Yongfeng Zhao - Riverside CA, US Yan Liu - Riverside CA, US
International Classification:
G01N 33/542 C07K 14/00 C07K 7/06
Abstract:
The disclosure provides method and composition utilizing fluorescent amino acids and fluorescent proteins comprising a moiety capable of undergoing FRET. The methods and compositions of the disclosure are useful in analyzing protein structure and function, and screening molecular inhibitors.
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