Cathode materials of lithium-ion are usually composed of active compounds of lithium, carbon anodes is a special molecular structure. Common cathode material mainly composed of LiCoO2, charging, the compound is applied to the positive pole of the battery HP G42T potential to force the release of lithium ions embedded negative saponification elements arranged in lamellar structure carbon. Discharge, carbon-ion battery of laminar combination saponification of precipitation and re-cathode composite structure. The movement of lithium ions generated current. The chemical reaction of cathode materials saponification HP G56 battery lithium ion usually comprises lithium active compounds, carbon anodes is a special molecular structure. Common cathode material mainly composed of LiCoO2, saponification the load, the compound is applied to the positive battery potential to force the release of lithium ions, negative elements arranged embedded in the laminar structure of carbon. Discharge, carbon-ion battery of laminar combination of precipitation and re-cathode composite structure. The movement of lithium ions generated saponification current. Although the principle should saponification be very simple, but in actual industrial production, the practical issues are considered much more equipment cathode additives required to maintain the activity of several charge saponification and discharge, the anode material needed to design level molecular structure to accommodate more lithium ion; filling the electrolyte between the positive and negative electrode, in addition to maintaining the stability, but also has good electrical conductivity, the internal resistance of the battery decreases HP ProBook 6570b. Although lithium-ion batteries with little memory effect of nickel-cadmium, the principle is that the memory effect crystallization, this reaction is hardly saponification generated in lithium battery. However, the battery capacity HP G62x lithium ion after repeated charge-discharge will continue to decline, its causes are complex and diverse. The main positive saponification and negative changes of the material itself, from the molecular saponification level, the positive and negative electrodes of lithium ion hole to accommodate the structure will gradually collapse, saponification obstruction; From the chemical point of view, is the active anode material is passive, side effects appear to form a stable other compounds. Cathode material falling gradually appear, etc Physically, short battery can ultimately reduce the number of the free movement of lithium ions during charging and discharging. Over and over discharge Cargo, HP EliteBook 8730w Battery Lithium positive and negative results in permanent damage, from the molecular ion, intuitive understanding, saponification excessive discharge of carbon anode will lead to excessive release of lithium ions and the does appear laminar structure collapsed, over-charging lithium ion will too hard on the negative carbon structure, and is part of the lithium ion and can not be released. This is why the lithium ion battery is generally equipped with a control circuit for loading and unloading.
Tuesday, February 10, 2015
Cathode materials of lithium-ion are usually composed of active compounds of lithium, carbon anodes
Cathode materials of lithium-ion are usually composed of active compounds of lithium, carbon anodes is a special molecular structure. Common cathode material mainly composed of LiCoO2, charging, the compound is applied to the positive pole of the battery HP G42T potential to force the release of lithium ions embedded negative saponification elements arranged in lamellar structure carbon. Discharge, carbon-ion battery of laminar combination saponification of precipitation and re-cathode composite structure. The movement of lithium ions generated current. The chemical reaction of cathode materials saponification HP G56 battery lithium ion usually comprises lithium active compounds, carbon anodes is a special molecular structure. Common cathode material mainly composed of LiCoO2, saponification the load, the compound is applied to the positive battery potential to force the release of lithium ions, negative elements arranged embedded in the laminar structure of carbon. Discharge, carbon-ion battery of laminar combination of precipitation and re-cathode composite structure. The movement of lithium ions generated saponification current. Although the principle should saponification be very simple, but in actual industrial production, the practical issues are considered much more equipment cathode additives required to maintain the activity of several charge saponification and discharge, the anode material needed to design level molecular structure to accommodate more lithium ion; filling the electrolyte between the positive and negative electrode, in addition to maintaining the stability, but also has good electrical conductivity, the internal resistance of the battery decreases HP ProBook 6570b. Although lithium-ion batteries with little memory effect of nickel-cadmium, the principle is that the memory effect crystallization, this reaction is hardly saponification generated in lithium battery. However, the battery capacity HP G62x lithium ion after repeated charge-discharge will continue to decline, its causes are complex and diverse. The main positive saponification and negative changes of the material itself, from the molecular saponification level, the positive and negative electrodes of lithium ion hole to accommodate the structure will gradually collapse, saponification obstruction; From the chemical point of view, is the active anode material is passive, side effects appear to form a stable other compounds. Cathode material falling gradually appear, etc Physically, short battery can ultimately reduce the number of the free movement of lithium ions during charging and discharging. Over and over discharge Cargo, HP EliteBook 8730w Battery Lithium positive and negative results in permanent damage, from the molecular ion, intuitive understanding, saponification excessive discharge of carbon anode will lead to excessive release of lithium ions and the does appear laminar structure collapsed, over-charging lithium ion will too hard on the negative carbon structure, and is part of the lithium ion and can not be released. This is why the lithium ion battery is generally equipped with a control circuit for loading and unloading.
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