Shin Gilyong, Jeon Jei Gyeong, Kim Ju Hyeon, Lee Ju Hwan, Lee Junho, Kim Hyeong Jun, Baek Jae Yun, Kang Kyung Mook, Han Yusu, So Byeong Jun, Kang Tae June
Department of Mechanical Engineering, Inha University, 100 Inha-ro, Michuhol-gu, Incheon 22212, Republic of Korea.
ACS Appl Mater Interfaces. 2021 Dec 22;13(50):60154-60162. doi: 10.1021/acsami.1c17059. Epub 2021 Nov 30.
Accurate and yet cost-effective temperature measurements are required in various sectors of academia and industry. Thermocouples (TCs) are most widely used for temperature measurements; however, their low temperature sensitivity and high thermal conductivity should be improved to ensure the reliable measurement of output voltage for small temperature differences. To address this, a paper-based ionic thermocouple (P-iTC) presented here utilizes a pair of paper strips soaked with the electrolytes of potassium ferri-/ferrocyanide and iron (II/III) chloride redox couples, which are used as p- and n-type elements, respectively. The fabricated P-iTC provides 70× higher temperature sensitivity (α, 2.8 mV/K) and 30× lower thermal conductivity (k, 0.8 W/m K) than those of commercial K-type TCs, thereby yielding a remarkably high α/k ratio of 3.5 mV m/W. Reliable sensing performance is measured during three weeks of operation, which indicates that the P-iTC should be stable in long-term operation. To demonstrate the practicality of the P-iTC, a 3 × 3 planar array of P-iTCs is fabricated to monitor the temperature profile of a surface in contact with heat sources. Using pencil-drawn graphite electrodes on paper, a highly cost-effective P-iTC with the material cost of ∼0.5 cents per device is also fabricated, which is successfully used to monitor cold chain temperatures while retaining its excellent temperature-sensing performance.
学术界和工业界的各个领域都需要精确且经济高效的温度测量。热电偶(TCs)是最广泛用于温度测量的器件;然而,它们的低温灵敏度和高导热率需要提高,以确保在小温差下可靠地测量输出电压。为了解决这个问题,本文提出的纸质离子热电偶(P-iTC)利用一对分别浸泡有铁氰化钾/亚铁氰化钾和氯化铁(II/III)氧化还原对电解质的纸条,分别用作p型和n型元件。所制备的P-iTC的温度灵敏度(α,2.8 mV/K)比商用K型热电偶高70倍,热导率(k,0.8 W/m K)低30倍,从而产生了3.5 mV m/W的极高α/k比。在三周的运行过程中测量到了可靠的传感性能,这表明P-iTC在长期运行中应该是稳定的。为了证明P-iTC的实用性,制作了一个3×3的P-iTC平面阵列,以监测与热源接触表面的温度分布。在纸上使用铅笔绘制的石墨电极,还制作了一种极具成本效益的P-iTC,每个器件的材料成本约为0.5美分,它成功地用于监测冷链温度,同时保持其优异的温度传感性能。