Abstract:
본 발명은 염료감응 태양전지 반도체 전극용 비수용성 페이스트 조성물, 이의 제조방법, 이를 이용한 염료감응 태양전지에 관한 것으로, 본 발명에 따른 염료감응 태양전지 반도체 전극용 비수용성 페이스트 조성물은 TiO 2 나노입자 용액, 유기용매, 결합제, 및 계면활성제에 액상의 TiO 2 를 더 포함한다. 상기 비수용성 페이스트 조성물은 액상의 TiO 2 가 TiO 2 나노입자들 표면에 코팅되어 염료감응 태양전지의 반도체 전극의 전기적 접촉을 향상시켜 광전변환효율을 현저히 개선시킨다. 염료감응 태양전지, 반도체 전극, 페이스트 조성물, 액상의 TiO2
Abstract:
PURPOSE: A solar cell is provided to reduce the thickness of the solar cell by arranging a glass tube and a protection unit on the side of the solar cell. CONSTITUTION: A first planar electrode(100) includes a through hole(104a,104b). A nano oxide layer(114) is formed on one side of a second planar electrode(112). A glass tube(106) is inserted into the through hole of the first planar electrode. A sealant(116) connects the edges of the first and second planar electrodes. An electrolyte(122) is filled between the first and second planar electrodes.
Abstract:
PURPOSE: A solar cell is provided to protect a glass tube from a physical impact by including a protection unit in the glass tube. CONSTITUTION: A catalyst layer(102) is formed on one side of a first planar electrode(100). A nano oxide layer(108) is formed on one side of a second planar electrode(106). A glass tube(112) is inserted into a through hole of the first planar electrode. An electrolyte(120) is filled between the first and second planar electrodes. A protection unit is located on the first planar electrode to protect the glass tube.
Abstract:
PURPOSE: A dye sensitized solar cell having reinforced durability is provided to prevent the leakage of an electrolyte solution due to pressure applied to electrodes or a sealing material surrounding the electrolyte solution. CONSTITUTION: A pair of plate type electrodes(110) are separated from each other. A sealing material(120) seals the circumference of the electrodes. An inlet for an electrolyte solution(160) is installed to either of the electrodes. The electrodes are transparent electrodes. A gap between a space for the electrolyte solution and the inlet is expanded to form a space which is not fully filled with the electrolyte solution.
Abstract:
염료 감응 태양 전지가 제공된다. 이 태양 전지는 규칙적으로 배열된 세공들을 갖는 전도체층, 전도체층의 표면에 배치된 산화물 반도체층 및 산화물 반도체층 표면에 배치된 염료층을 갖는 전극 구조체를 포함한다. 염료 감응, 태양 전지, 규칙 배열, 템플릿, 산화물 반도체
Abstract:
A system for cleaning surface of a solar cell panel is provided to increase optical generating efficiency of a solar cell panel by effectively cleaning the surface of a solar cell panel. A system for cleaning surface of a solar cell panel comprises a measuring unit(110) measuring a photovoltaic value of a solar cell panel; a reference unit(130) supplying a reference value; a control unit(120) commanding the cleaning of a solar cell panel by comparing the photovoltaic value with the reference value; a drive unit(140) driving a cleaning device for cleaning the surface of the solar cell panel; and a management unit(160) receiving an alarm signal from a control unit. In case the reduction of a photovoltaic value occurs due to the pollution on the surface of the solar cell panel, the control unit orders the cleaning of the solar cell panel. In case the cause of the reduction of a photovoltaic value is not due to the pollution on the surface of the solar cell panel, the control unit transmits alarm signal to the management unit. The measuring unit includes at least one among an ammeter(111), a voltmeter(112), a wattmeter(113), and a watt-hour meter(114).
Abstract:
A solar battery and manufacturing method thereof having the increased energy conversion efficiency is provided to form the dye layer covering the inner and exterior wall of the nano particle of hollow type. The dye-sensitized solar cell comprises the lower electrode structure(10), and the upper electrode structure and the semiconductor electrode layer(20) which contacts with the lower electrode structure. The electrolyte solution is interposed between the upper electrode structure and the semiconductor electrode layer. The dye layer including the dye molecule is formed on the surface of the semiconductor electrode layer. The upper electrode structure comprises the top electrode layer coated on one side of the top glass substrate and the top glass substrate. The bottom electrode layer is formed with one among the indium tin oxide (Indium Tin Oxide: ITO), SnO2, SnO2:F (FTO), ZnO and carbon nanotube. The top electrode layer is formed with one among the ITO, SnO2, FTO, ZnO and carbon nanotube.
Abstract:
A method for forming a porous layer, a dye-sensitized solar cell using the same, and a method for manufacturing the dye-sensitized solar cell are provided to prevent liquid material from being leaked by forming a polymer film with a porous structure or a sponge structure for storing an electrolyte. An upper electrode structure(50) is arranged on a lower electrode structure(10). A semiconductor electrode layer(20) is interposed between the lower electrode structure and the upper electrode structure. The semiconductor electrode layer contacts the lower electrode structure. A porous polymer film(30) is interposed between the semiconductor electrode layer and the upper electrode structure. The pores of the porous polymer film are filled with the electrolyte.