摘要:
A main object of the present invention is to provide a method for manufacturing a sulfide solid electrolyte that enables a sulfide solid electrolyte whose ion-conducting characteristic is easy to be improved, to be manufactured. The present invention is a method for manufacturing a sulfide solid electrolyte including loading a raw material for manufacturing a sulfide solid electrolyte which is mainly composed of a substance represented by the general formula of (100 - x)(0.75Li 2 S·0.25P 2 S 5 )·xLiI (here, 0
摘要翻译:本发明的主要目的是提供制造硫化物固体电解质的方法,该硫化物固体电解质能够制造易于提高其离子传导特性的硫化物固体电解质。 本发明是一种硫化物固体电解质的制造方法,其特征在于,包括负载用于制造硫化物固体电解质的原料,所述硫化物固体电解质主要由通式(100-x)(0.75Li 2 S·0.25P 2 S 5)·xLiI(这里,0
摘要:
Disclosed herein is a composition for solar cell electrodes. The composition includes silver powder; glass frits; and an organic vehicle, wherein the glass frits have a glass transition temperature of about 100°C to about 300°C and exhibit an exothermic peak starting temperature of about 200°C to about 400°C on a DTA curve in TG-DTA analysis. Solar cell electrodes formed of the composition have high open circuit voltage and short circuit current density, thereby providing excellent conversion efficiency and fill factor.
摘要:
A main object of the present invention is to provide a method for manufacturing a sulfide solid electrolyte that enables a sulfide solid electrolyte whose ion-conducting characteristic is easy to be improved, to be manufactured. The present invention is a method for manufacturing a sulfide solid electrolyte including loading a raw material for manufacturing a sulfide solid electrolyte which is mainly composed of a substance represented by the general formula of (100 - x)(0.75Li 2 S·0.25P 2 S 5 )·xLiI (here, 0 2 .
摘要:
A solid electrolyte glass at least including: at least one alkali metal element; a phosphorus (P) element; a sulfur (S) element; and one or more halogen elements selected from I, Cl, Br and F; wherein the solid electrolyte glass has two exothermic peaks that are separated from each other in a temperature range of 150°C to 350°C as determined by differential scanning calorimetry (in a dry nitrogen atmosphere at a temperature-elevating speed of 10°C/min from 20 to 600°C).
摘要:
Alkali resistant high melting point glass containing about 15% - 20% zirconium dioxide forms an optimum composite structure with 1 to 6 parts glass frit to 1 to 2 parts ruthenium dioxide when fired at 800 to 1000°C.
摘要:
This ceramic-substrate production method is provided with: a step for preparing a ceramic paste obtained by adding, to a starting-material powder of a glass ceramic, a powder of a metal boride and/or a metal silicide; a step in which the ceramic paste is applied to a green sheet which will become a ceramic layer after being baked; a step in which a conductor paste which will become a conductor pattern after being baked is applied on the ceramic paste applied to the green sheet; and a step in which the green sheet having the ceramic paste and the conductor paste applied thereto is baked.