摘要:
The present invention provides an electrolyte solvent with adjustable solvation properties, and through an electrolyte technology, adjusts the anion-rich solvent with favorable solubility, and develops and synthesizes the solvent with weak solvation properties, so that the battery performance can be greatly improved and the solvent can be produced at low cost. The electrolyte technology of the present invention can control the electrochemical battery, taking the lithium battery as an example, the growth pattern of the lithium and the interface control of the positive and negative electrodes, which can help improve the safety of the lithium battery during fast charging, and it can be extended to various electrochemical devices such as metal/metal-ion/metal and metal-ion hybrid batteries.
摘要:
A ceramic material, methods for adsorbing and converting carbon dioxide are provided. The ceramic material is represented by a chemical formula M 1x M 2y O z , wherein M 1 is selected from a group consisting of Nd, Sm, Gd, Yb, Sc, Y, La, Ac, Al, Ga, In, T1, V, Nb, Ta, Fe, Co, Ni, Cu, Ca, Sr, Na, Li and K; M 2 is selected from a group consisting of Ce, Zn, Ti, Zr and Si; O represents oxygen atom; x 0.5, x+y=1.0, z 2 at 50°C.
摘要翻译:的陶瓷材料,提供了用于吸附和转换二氧化碳的方法。 该陶瓷材料由化学式M 1×中号2Yö-Z,其中M 1是从一组由Nd,钐,钆,镱,SC,Y,镧,AC,铝,镓,铟,T1的选择为代表, 钒,铌,钽,铁,铜,钴,镍,钙,锶,钠,锂,钾; M 2是从一组选自由Ce,锌,钛,锆和硅的选择; ødarstellt氧原子; X <0.5,Y> 0.5,X + Y = 1.0,Z <2.0; 和陶瓷材料具有在50℃下吸附的不小于20摩尔/克容量CO 2
摘要:
Present invention is related to equipment for continuously processing electrochemical device or component for increasing capacity comprising a first reaction part (11), a second reaction part (12) and a separated layer (13) configured to be placed between the first reaction part (11) and the second reaction part (12). The first reaction part (11) comprises a counter electrode (111), a first reaction solution (113) contained in a first reaction cell (112) having a gas outlet (114). The first reaction solution (113) will produce a first non-metallic ion (1131), a second metallic ion (1132) and a third gas after conducting an electrochemical reaction. The second reaction part (12) comprises a working electrode (121) and a second reaction solution (123) containing the second metallic ion (1132) permeated through the separated layer (13) from the first reaction part (11). The second metallic ion (1132) will then be deposited as metal particles onto the working electrode (121) which has been continuously fed into the second reaction part (12). The present invention provides equipment which can continuously produce electrode with extra or additional lithium source without the effect of the gas byproduct with more evenly distribution and high quality.
摘要:
A mediator-type photocell system (4) is provided. The mediator-type photocell system includes a galvanic cell (6) having a galvanic cell anode (12) and a galvanic cell cathode (11); and a light capturing portion (8), including a light capturing cathode (72) corresponding to the galvanic cell anode (12); and a light capturing anode (71) electrically connected to the light capturing cathode (72) via a conductive element (2'), and corresponding to the galvanic cell cathode (11), wherein the galvanic cell cathode (11) and the light capturing anode (71) have a first mediator (41') therebetween, the galvanic cell anode (12) and the light capturing cathode (72) have a second mediator (42') therebetween, an oxide is generated for providing to the galvanic cell cathode (11) when the first mediator (41') is illuminated, and a reducing substance is generated for providing to the galvanic cell anode (12) when the second mediator (42') is illuminated.