Abstract:
An all-solid secondary battery, including: a cathode; an anode; and a solid electrolyte layer disposed between the cathode and the anode, wherein the anode comprises an anode current collector; a first anode active material layer in contact with the anode current collector and comprising a first metal; a second anode active material layer disposed between the first anode active material layer and the solid electrolyte layer and comprising a carbon-containing active material; and a contact layer between the second anode active material layer and the solid electrolyte layer, and disposed such that the contact layer prevents contact between the second anode active material layer and the solid electrolyte layer, wherein the contact layer comprises a second metal, and has a thickness less than a thickness of the first anode active material layer.
Abstract:
Disclosed are an anode-solid electrolyte sub-assembly for a solid-state secondary battery, a solid-state secondary battery including the same, and a method of preparing the same, wherein the anode-solid electrolyte sub-assembly includes an anode current collector; a solid electrolyte having a first portion with a plurality of uptake rooms providing space for storing lithium, and a second portion without uptake rooms; an interlayer disposed between the anode current collector and the first portion of the solid electrolyte and facing an opening of the uptake rooms; and an insulation layer disposed between the anode current collector and the second portion of the solid electrolyte.
Abstract:
A dishwasher comprises a tub; a sump in which water supplied to the tub is accommodated; and a water tank disposed at one side of the tub. The water tank comprises a water storage part; a water supply channel that is connected to the sump and supplies water to the water storage part; an inlet which is provided at the top of the water storage part and through which water supplied via the water supply channel is introduced into the water storage part; an excessive supply water return channel which communicates at a first end thereof with the inlet and communicates at a second end thereof with the tub; and a floating cap which is provided under the inlet in the water storage part to selectively block the inlet according to the amount of water accommodated in the water storage part, wherein when the water storage is full of water, the floating cap blocks the inlet to disconnect the water storage part from the excessive supply water return channel.
Abstract:
A dishwasher is disclosed. The dishwasher includes a main body provided a washing tub inside, a first basket disposed inside the washing tub and configured to accommodate an object to be washed, and a second basket configured to accommodate the object to be washed, and move in a vertical direction between a first position disposed in a partial area inside the first basket, and a second position disposed above the partial area spaced apart from the first basket.
a compound represented by Formula 1, a compound represented by Formula 2, or a combination thereof
Li1+x+y-zTa2-xMxP1-yQyO8-zXz Formula 1
wherein, in Formula 1,
M is an element having an oxidation number of +4, Q is an element having an oxidation number of +4, X is a halogen, a pseudohalogen, or a combination thereof, and
Abstract:
A rack assembly comprising a frame; and a fixing rack coupleable to the top of the frame. The fixed rack comprises: a housing forming an outer contour of the fixing rack, the housing including a bottom surface that is at least partially open; a plurality of horizontal ribs, formed on the bottom surface of the housing, and spaced apart from each other; and a plurality of vertical ribs formed on the bottom surface of the housing perpendicular to the plurality of horizontal ribs, and spaced apart from each other, and the fixing rack has a region that is curved along a direction parallel to the plurality of vertical ribs.
Abstract:
A solid conductor including: a compound represented by Formula 1, a compound represented by Formula 2, or a combination thereof Li1+x+y−zTa2-xMxP1-yQyO8-zXz Formula 1 wherein, in Formula 1, M is an element having an oxidation number of +4, Q is an element having an oxidation number of +4, X is a halogen, a pseudohalogen, or a combination thereof, and 0≤x≤2, 0≤y
Abstract:
A solid electrolyte including an inorganic lithium ion conductive film and a porous layer on a surface of the inorganic lithium ion conductive film, wherein the porous layer includes a first porous layer and a second porous layer, and the second porous layer is disposed between the inorganic lithium ion conductive film and the first porous layer, and wherein the first porous layer has a size greater which is than a pore size of the second porous layer.
Abstract:
A solid electrolyte including: a lithium ion inorganic conductive layer; and an amorphous phase on a surface of the lithium ion inorganic conductive layer, wherein the amorphous phase is an irradiation product of the lithium ion inorganic conductive layer. Also, the method of preparing the same, and a lithium battery including the solid electrolyte.
Abstract:
A composite electrolyte including a polymeric ionic liquid; and an oligomeric electrolyte, wherein the oligomeric electrolyte includes an oligomer.