Invention Application
- Patent Title: VERTICALLY STACKED PHOTOVOLTAIC AND THERMAL SOLAR CELL
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Application No.: US16027623Application Date: 2018-07-05
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Publication No.: US20180315871A1Publication Date: 2018-11-01
- Inventor: Seamus Curran , Sampath Dias , Kang-Shyang Liao , Soniya Devi Yambem , Amrita Haldar , Nigel Alley
- Applicant: University of Houston System
- Applicant Address: US TX Houston
- Assignee: University of Houston System
- Current Assignee: University of Houston System
- Current Assignee Address: US TX Houston
- Main IPC: H01L31/032
- IPC: H01L31/032 ; H01L31/0749 ; H01L31/054 ; H01L27/30 ; H01L31/052 ; H01L31/043 ; H01L31/055 ; H01L51/42

Abstract:
According to some embodiments, the present invention provides a novel photovoltaic solar cell system from photovoltaic modules that are vertically arrayed in a stack format using thin film semiconductors selected from among organic and inorganic thin film semiconductors. The stack cells may be cells that are produced in a planar manner, then vertically oriented in an angular form, also termed herein tilted, to maximize the light capturing aspects. The use of a stack configuration system as described herein allows for the use of a variety of electrode materials, such as transparent materials or semitransparent metals. Light concentration can be achieved by using fresnel lens, parabolic mirrors or derivatives of such structures. The light capturing can be controlled by being reflected back and forth in the photovoltaic system until significant quantities of the resonant light is absorbed. Light that passes to the very end and can be reflected back through the device by beveling or capping the end of the device with a different refractive index material, or alternatively using a reflective surface. The contacting between stacked cells can be done in series or parallel. According to some embodiments, the present invention uses a concentrator architecture where the light is channeled into the cells that contain thermal fluid channels (using a transparent fluid such as water) to absorb and hence reduce the thermal energy generation.
Public/Granted literature
- US10741708B2 Vertically stacked photovoltaic and thermal solar cell Public/Granted day:2020-08-11
Information query
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