摘要:
A CIGS film production method is provided which ensures that a CIGS film having a higher conversion efficiency can be produced at lower costs at higher reproducibility even for production of a large-area device. A CIGS solar cell production method is also provided for producing a CIGS solar cell including the CIGS film. The CIGS film production method includes: a stacking step of stacking a layer (A) containing indium, gallium and selenium and a layer (B) containing copper and selenium in a solid phase in this order over a substrate; and a heating step of heating a stacked structure including the layer (A) and the layer (B) to melt a compound of copper and selenium of the layer (B) into a liquid phase to thereby diffuse copper from the layer (B) into the layer (A) to permit crystal growth to provide a CIGS film.
摘要:
For achievement of a power storage device electrode having a high capacity density and a high energy density, a method of manufacturing the same and a power storage device including the same, there is provided a power storage device electrode serving as at least one of a positive electrode and a negative electrode which constitute a power storage device. The power storage device electrode contains an active material including: (A) an electrically conductive polymer; and (B) an anthraquinone compound having at least two amino groups and a structure represented by Formula (1) below.
摘要:
A production method capable of efficiently producing a solar battery cell which hardly causes an electric short circuit at the cut end surface of a solar battery element is provided. A method for producing a solar battery cell of the present invention in which a solar battery cell is obtained from an elongated solar battery element 11 including an elongated flexible base material 41, a first electrode layer 211, a light absorbing layer 31, and a second electrode layer 221 in this order, and the method includes a partial removal step of forming one or more partial removal portion 61 each extending like a belt at a plurality of parts in the surface of the solar battery element 11 by partially removing layers of the second electrode layer 221 through to the light absorbing layer 31 or the second electrode layer 221 through to the first electrode layer 211, and a cutting step of cutting the solar battery element 11 at the partial removal portion 61.
摘要:
The present invention provides a method for producing an organic EL device and the organic EL device, capable of enhancing reliability of the organic EL device by suppressing peeling caused by stress concentration to each layer end through reduction in the stress concentration even in the case of using a roll-to-roll process. The method includes: supplying a substrate (101) from a delivery roll to a wind-up roll; forming a first electrode layer (102) over the substrate (101); forming an organic EL layer (103) over the first electrode layer (102); and forming a second electrode layer (104) over the organic EL layer (103). The first electrode layer (102) is formed using a shadow mask. At least a part of a side surface of the first electrode layer (102) is a tapered surface (102T) of inwardly sloping from a lower side toward an upper side. An angle formed between the tapered surface (102T) and a surface of the substrate (101) on the side over which the first electrode layer (102) is formed is 1° or less.
摘要:
An organic EL device and a method for forming the same, capable of obtaining a high light emission yield and improving long-term stability. The organic EL device is an organic EL device (100) including: a conductive substrate (101); an inorganic insulating layer (102) formed over the conductive substrate (101); an organic insulating layer (103) formed over the inorganic insulating layer (102); and an organic EL element (110) formed over the organic insulating layer (103); and a sealing material (150) of sealing the organic insulating layer (103) and the organic EL element (110), and the organic insulating layer (103) is formed inside the sealing material (150).
摘要:
A CIGS film production method is provided which ensures that a CIGS film having a higher conversion efficiency can be produced at lower costs at higher reproducibility even for production of a large-area device. A CIGS solar cell production method is also provided for producing a CIGS solar cell including the CIGS film. The CIGS film production method includes: a stacking step of stacking a layer (A) containing indium, gallium and selenium and a layer (B) containing copper and selenium in a solid phase in this order over a substrate; and a heating step of heating a stacked structure including the layer (A) and the layer (B) to melt a compound of copper and selenium of the layer (B) into a liquid phase to thereby diffuse copper from the layer (B) into the layer (A) to permit crystal growth to provide a CIGS film.