Ionic liquid (IL) dual‐ion batteries (DIBs) are widely studied as advanced electrochemical systems because of their potential nonflammability, environmental friendliness, and high working voltage. Recycling and reusing valuable IL electrolytes and metallic Ni current collectors might boost the application of IL DIBs. Herein, the preliminary results of the recycling of a spent DIB with 1,2‐dimethyl‐3‐propylimidazolium chloroaluminate (DMPI+)(AlCl4−) electrolyte are reported. Recovery rates of most components (graphite flakes, Ni current collector, and so on) of the DIB reach a range of 84–98%, whereas the IL electrolyte is only 24%. Optimistically, the cost of an IL DIB using recycled components can be reduced by around 68%. Thus, developing the recycling processes might pave the way to increase the competitiveness of IL DIBs for grid‐scale energy storage.
A high performance of wavelength 870nm resonant cavity LED (RCLED) was fabricated.The high performance of InGaAs/GaAs multiple quantum wells (MQWs) and distributed Bragg reflector (DBR) were employed to achieve the high transmission rate. Two devices A and B were fabricated in this paper. Device A has an offset of 10nm between active region gain and resonant gain, and device B without it. Due to the wavelength shift of active region gain is faster than that of DBR's resonant gain at higher temperature. Device A shows the better temperature performances than device B. A cutoff frequency of 60MHz, a low forward voltage of 1.6V, a output power of 1mW at 10mA and a output power temperature variation (∆P/∆T) of -0.02dBm/ ℃ with chip dimensions of 220um x 220um and 85um diameter emitting window are obtained.
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