Search Results - haoran+sun

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Cost-Effective Single-Step Process for the Catalytic Conversion of Methane to Methanol/Formaldehyde
Unmet Need: Currently there is no technology available in the market capable of producing Dimethyl Ether (DME) from methane in a single reactor. DME is an attractive substitute for diesel due to its high cetane number, which is a measure of its ignitibility in compression ignition engines. In addition, DME’s quiet combustion and inability to form...
Published: 5/25/2023   |   Inventor(s): Su Ha, M Norton, Oscar Marin Flores
Keywords(s):  
Category(s): Technologies > Health & Well-being > Chemistry, Technologies > Energy & Environment > Energy
Magnetically-Triggered Drug Delivery Vehicles for Controlled, Targeted Therapy
Provides Clinicians Unprecedented Control over Spatial and Temporal Distribution of a Drug or AgentThis magnetically-triggered drug delivery platform can deliver a wide array of nano-medicines to targeted cells in the body. Nanotechnology is a growing science that is useful in targeting and treating cancerous cells and other harmful agents. The global...
Published: 6/27/2021   |   Inventor(s): Carlos Rinaldi, Brent Sumerlin, Hao Sun
Keywords(s): Cancer Cells Targeting, Cancer Drug Delivery, controlled medication release, Drug Delivery (controlled), drug delivery particles, lysomal death pathways, Nanotechnology
Category(s): Technology Classifications > Human Health Care > Drug Delivery
Fluorinated Polymer, Method of Making, and Use in Electrochemical Cell
Low specific capacity and low charge/discharge rate of current cathodic materials are the bottle-neck for the next generation electrochemical energy storage devices, particularly for “on-demand applications.” Current batteries rely on transition metal salts (e.g. LiMO2, LiMPO4) and mixed metal oxide lithium salts as cathodic materials. The...
Published: 11/15/2022   |   Inventor(s): Haoran Sun
Keywords(s): Clean Energy, Energy Storage, Fluorinated Materials, Fluorine, Organic Chemistry, Polymer Chemistry, Semiconductors
Category(s): Chemistry, Fluorinated Materials, Energy Storage, Polymer Chemistry, Materials Science
Electron-Deficient Fluorous Porphyrins and Their Use in Organic Solar Cells
Fluorinated aromatics and related materials offer many advantages over non-fluorinated materials in a variety of different optoelectronic devices such as, but not limited to, organic light emitting diodes (OLEDs), organic field-effect transistors (OFETs), organic solar cells (OSCs), and dye-sensitized solar cells (DSSCs). These fluorinated materials...
Published: 5/2/2020   |   Inventor(s): Haoran Sun
Keywords(s): Chemistry, Fluorinated Materials, Fluorine, Optical Communication, Optoelectronics, Semiconductors
Category(s): Chemistry, Semiconductors, Renewable Energy, Fluorinated Materials, Optoelectronics, Materials Science
Fluorinated ultra-thin film
Fluoropolymers have experienced widespread use as functional materials in applications ranging from water purification to energy storage. Production of large area, two-dimensional (2D), ultra-thin, semifluorinated polymer films is expected to have significant impacts on multiple fields. Some of these fields are organic electronics and optoelectronics...
Published: 3/30/2020   |   Inventor(s): Haoran Sun
Keywords(s): Fluorinated Materials, Fluorine, Manufacturing, Organic Chemistry, Polymer Chemistry, Semiconductors, Sensors
Category(s): Chemistry, Optoelectronics, Fluorinated Materials, Clean Energy, Polymer Chemistry, Materials Science
Fluorinated Aromatic Materials
Researchers at the University of South Dakota have designed and synthesized new compounds for stable, efficient, and moisture‐resistant optoelectronics. Fluorinated materials are used in many state‐of‐the‐art applications including active matrix liquid crystal displays, lithium ion batteries, and proton exchange membranes for fuel cells. They are also...
Published: 9/9/2022   |   Inventor(s): Haoran Sun
Keywords(s): Chemistry, Fluorinated Materials, Fluorine, Optical Communication, Optoelectronics, Semiconductors
Category(s): Renewable Energy, Fluorinated Materials, Optoelectronics, Semiconductors, Materials Science