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P-N conversion in thermogalvanic cells induced by thermo-sensitive nanogels for body heat harvesting

机译:通过热敏纳米凝胶诱导的热血吸虫细胞中的P-N转化,用于体温收割

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Thermogalvanic cells (TGC) are promising devices for directly converting heat into a stable electric output. The practical applications of TGCs are presently significantly hindered by the low voltage (millivolt level) generated from a limited temperature difference. One general strategy for improving the voltage is to alternately connect n-type and p-type redox units in series. However, the number of the possible redox species is limited, hindering the optimization of the series stacking of devices. In this work, we report a novel concept that enables p-n conversion for the iodide/triiodide (I-/I-3(-)) redox couple induced by poly (N-isopropylacrylamide) (PNIPAM) thermo-sensitive nanogels, with the Seebeck coefficient changing from 0.71 mV K-1 to - 1.91 mV K-1. The results prove that the nanogels enable selective capture of I-3(-) at the hot side followed by the release of I-3(-) at the cold side, yielding a concentration gradient of the free I-3(-), resulting in the p-n inversion. Furthermore, we designed a wearable device consisting of alternating I-/I-3(-) and I-/I-3(-)/nanogels unites in series that generated the open-circuit voltage of approximately 1 V and output power of approximately 9 mu W by utilizing body heat. This work developed a new method for inverting the Seebeck effect of redox couples and is highly important for extending the library of possible redox species in TGCs.
机译:热血流常规细胞(TGC)是用于将热量直接转换成稳定的电输出的有希望的装置。 TGCS的实际应用目前由从有限的温度差产生的低电压(毫伏)显着阻碍。用于改善电压的一个一般策略是交替地串联连接n型和P型氧化还原单元。然而,可能的氧化还原物种的数量是有限的,阻碍了设备的串联堆叠的优化。在这项工作中,我们报告了一种新的概念,其使PN转化为碘化物/三碘化物(I-/ I-3( - ))氧化还原对应的氧化还原对应的eDbeck系数从0.71 mV k-1到-1.91 mV k-1变化。结果证明,纳米凝块能够在热侧进行选择性捕获I-3( - ),然后在冷侧释放I-3( - ),产生自由I-3( - )的浓度梯度,导致pn反转。此外,我们设计了一种可穿戴设备,包括串联的I-/ I-3( - )和I-/ I-3( - )/纳米凝电磁线单元,其产生大约1 V的开路电压和大约的输出功率利用体温9μW。这项工作开发了一种反转氧化还原耦合的塞贝克效应的新方法,对于在TGCS中扩展可能的氧化还原物种的文库非常重要。

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