Chu Kunmo, Lee Sung-Chul, Lee Sangeui, Kim Dongearn, Moon Changyoul, Park Sung-Hoon
Samsung Advanced Institute of Technology, Suwon, 443-803, Korea.
Nanoscale. 2015 Jan 14;7(2):471-8. doi: 10.1039/c4nr04489d.
Zero temperature coefficient of resistance (TCR) is essential for the precise control of temperature in heating element and sensor applications. Many studies have focused on developing zero-TCR systems with inorganic compounds; however, very few have dealt with developing zero-TCR systems with polymeric materials. Composite systems with a polymer matrix and a conducting filler show either a negative (NTC) or a positive temperature coefficient (PTC) of resistance, depending on several factors, e.g., the polymer nature and the filler shape. In this study, we developed a hybrid conducting zero-TCR composite having self-heating properties for thermal stability and reliable temperature control. The bi-layer composites consisted of a carbon nanotube (CNT)-based layer having an NTC of resistance and a carbon black (CB)-based layer having a PTC of resistance which was in direct contact with electrodes to stabilize the electrical resistance change during electric Joule heating. The composite showed nearly constant resistance values with less than 2% deviation of the normalized resistance until 200 °C. The CB layer worked both as a buffer and as a distributor layer against the current flow from an applied voltage. This behavior, which was confirmed both experimentally and theoretically, has been rarely reported for polymer-based composite systems.
零电阻温度系数(TCR)对于加热元件和传感器应用中的温度精确控制至关重要。许多研究都集中在开发具有无机化合物的零TCR系统;然而,很少有研究涉及开发具有聚合物材料的零TCR系统。具有聚合物基体和导电填料的复合系统根据几个因素,例如聚合物性质和填料形状,表现出负(NTC)或正电阻温度系数(PTC)。在本研究中,我们开发了一种具有自热特性的混合导电零TCR复合材料,用于热稳定性和可靠的温度控制。双层复合材料由具有负电阻温度系数的基于碳纳米管(CNT)的层和具有正电阻温度系数的基于炭黑(CB)的层组成,该层与电极直接接触,以稳定焦耳加热期间的电阻变化。该复合材料在200℃之前显示出几乎恒定的电阻值,归一化电阻偏差小于2%。炭黑层既作为缓冲层,又作为抵抗施加电压产生的电流流动的分布层。这种行为在实验和理论上都得到了证实,在基于聚合物的复合系统中很少有报道。