Chemical energy and electric energy conversion device
A technology of electrical energy conversion and chemical energy, applied in the field of electrochemistry and electricity, can solve the problems that electrolyte technology has not made a substantial breakthrough and is difficult to implement
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Embodiment 1
[0225] Such as figure 1 The shown chemical energy to electrical energy conversion device includes a conductive reducing agent region A1 and a conductive reducing agent region B2, and the conductive reducing agent region A1 is provided in an electrically non-conductive relationship with the conductive reducing agent region B2 via a micro-gap 12 .
[0226] As a changeable implementation mode, in this embodiment, the conductive reducing agent region A1 can be selectively set to have a non-electronic electrical relationship with the conductive reducing agent region B2 through the micro-gap 12, and the conductive reducing agent region A1 is set as a three-dimensional electrode A and / or the conductive reducing agent region B2 is set as a three-dimensional electrode B.
Embodiment 2
[0228] Such as figure 2 The shown chemical energy to electrical energy conversion device includes a conductive reducing agent area A1 and a conductive reducing agent area B2, the conductive reducing agent area A1 communicates with the oxidant supply channel 4, and the conductive reducing agent area B2 communicates with the oxidant supply channel 4 is arranged in communication, and the conductive reducing agent region A1 is arranged in a non-electronic conducting electrical relationship with the conductive reducing agent region B2 through the micro-gap 12.
[0229]As a changeable implementation mode, in this embodiment, the conductive reducing agent area A1 can be selectively set in communication with the oxidant supply channel 4, and the conductive reducing agent area B2 is set in communication with the oxidant supply channel 4. The conductive reducing agent region A1 is provided with a non-electronic conduction electrical relationship with the conductive reducing agent regio...
Embodiment 3
[0231] Such as image 3 The shown chemical energy to electrical energy conversion device includes a conductive reducing agent region A1 and a conductive reducing agent region B2, the conductive reducing agent region A1 is arranged in the cavity 5, and the conductive reducing agent region B2 is arranged in the cavity 5 Inside, the conductive reducing agent area A1 communicates with the oxidant supply channel 4, the conductive reducing agent area B2 communicates with the oxidant supply channel 4, and the conductive reducing agent area A1 communicates with the conductive reducing agent area A1 through the micro gap 12. Agent region B2 has a non-electron-conducting electrical relationship setting.
[0232] As a changeable implementation mode, in this embodiment, the conductive reducing agent area A1 can be selectively set in the cavity 5, the conductive reducing agent area B2 can be set in the cavity 5, and the conductive reducing agent area B2 can be set in the cavity 5. The age...
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