Abstract:
Ein erstes fotoelektrisches Umwandlungselement gemäß einer Ausführungsform der vorliegenden Offenbarung umfasst: eine erste Elektrode; eine zweite Elektrode, die so angeordnet ist, dass sie der ersten Elektrode gegenüberliegt; und eine fotoelektrische Umwandlungsschicht, die zwischen der ersten Elektrode und der zweiten Elektrode vorgesehen ist und ein Chromophor, ein Fulleren oder ein Fulleren-Derivat und ein Löcher transportierendes Material enthält, worin das Chromophor und das Fulleren oder das Fulleren-Derivat über eine vernetzende Gruppe in der fotoelektrischen Umwandlungsschicht zumindest teilweise aneinander gebunden sind.
Abstract:
Ein fotoelektrisches Umwandlungselement der vorliegenden Offenbarung umfasst: eine erste Elektrode; eine zweite Elektrode, die der ersten Elektrode gegenüberliegt; und eine organische Schicht, die zwischen der ersten Elektrode und der zweiten Elektrode bereitgestellt ist und eine organische fotoelektrische Umwandlungsschicht enthält, und zumindest eine in der organischen Schicht enthaltene Schicht ist zumindest eine Art eines durch einen allgemeinen Ausdruck (1) repräsentierten organischen Halbleitermaterials enthaltend ausgebildet.
Abstract:
A solid-state image pickup unit of the invention includes a plurality of pixels, each of which includes a photoelectric conversion element (1). The photoelectric conversion element (1) includes a photoelectric conversion layer (13); and first and second electrodes (12, 14) provided with the photoelectric conversion layer in between, the photoelectric conversion layer including a first organic semiconductor of a first conductive type and a second organic semiconductor of a second conductive type, and being configured by addition of a third organic semiconductor made of a derivative or an isomer of one of the first and second organic semiconductors.
Abstract:
[Object] To provide a wireless power supply device and a wireless power supply method capable of supplying electric power by a wireless system, using a means other than radio waves. [Solving Means] This wireless power supply device of the present invention is provided with (A) a thermoelectric generation device 10 which performs thermoelectric generation in response to the change in atmospheric temperature, and (B) a temperature control device 60 which periodically changes the atmospheric temperature of the thermoelectric generation device 10. Further, this wireless power supply method uses a wireless power supply device provided with a thermoelectric generation device 10 and a temperature control device 16, wherein the atmospheric temperature of the thermoelectric generation device 10 is periodically changed by the temperature control device 60, and the thermoelectric generation device 10 performs thermoelectric generation in response to the change in the atmospheric temperature, and the obtained power is brought to the exterior.
Abstract:
A photoelectric conversion device includes an organic photoelectric conversion film; a first electrode and a second electrode provided with the organic photoelectric conversion film in between; and a charge block layer provided between the second electrode and the organic photoelectric conversion film, in which the charge block layer includes a work function adjustment layer including a metal element on the second electrode side of the organic photoelectric conversion film, the metal element being adopted to adjust a work function, and a first diffusion suppression layer provided between the work function adjustment layer and the second electrode and suppressing diffusion of the metal element to the second electrode side.
Abstract:
PROBLEM TO BE SOLVED: To provide a wireless power supply device and a wireless power supply method capable of supplying power wirelessly by means other than electric waves.SOLUTION: A wireless power supply device of the present invention comprises: (A) a thermoelectric power generator 10 configured to generate power thermoelectrically in response to variation in temperature of an atmosphere; and (B) a temperature controller 60 configured to periodically vary the temperature of the atmosphere in which the thermoelectric power generator 10 is arranged. A wireless power supply method of the present invention uses the wireless power supply device comprising the thermoelectric power generator 10 and the temperature controller 60. In the wireless power supply method, the temperature controller 60 periodically varies temperature of the atmosphere in which the thermoelectric power generator 10 is arranged; the thermoelectric power generator 10 generates power thermoelectrically in response to variation in temperature of the atmosphere; and the obtained power is taken to the outside.
Abstract:
PROBLEM TO BE SOLVED: To provide a titanium oxide structure capable of suitably using to form a semiconductor layer of a photoelectric conversion device and a method for producing the same, and to provide the photooelectric conversion device having high photoelectric conversion efficiency.SOLUTION: The method for producing the titanium oxide structure includes steps of: producing a titanium oxide nanowire on a titanium substrate; immersing the titanium oxide nanowire in a solution prepared by dissolving titanium oxysulfate and urea and forming titanium oxide fine particles 3b on a surface of the titanium oxide nanowire 3a; and recovering the titanium oxide nanowire on which the titanium oxide fine particles are formed and drying it.
Abstract:
PROBLEM TO BE SOLVED: To provide an eyeglass device with which a user can view three-dimensional images with improved visual quality.SOLUTION: An eyeglass device includes a right eye lens 22A and a left eye lens 22B which are held by a frame. Both of the right eye lens 22A and the left eye lens 22B have light transmissive electrodes 23A and 23B each of which has a convex cross-section in the viewing direction, and a light transmission control layer 24 provided along the electrodes 23A and 23B and with which light transmissibility can be electrically controlled.