Rubber Technology Centre, Indian Institute of Technology Kharagpur, Kharagpur 721302, India.
Anton Paar India Pvt. Ltd, Gurgaon, 122016, India.
Nanoscale. 2024 Feb 15;16(7):3498-3509. doi: 10.1039/d3nr04774a.
Flexible strain sensors have garnered attraction in the human healthcare domain. However, caveats like crosstalk and noise associated with the output signal of such a sensor often limit the accuracy. Hence, developing a strain sensor frugal engineering is critical, thereby warranting its mass utility. A stencil printable graphene/liquid elastomeric crosstalk-free strain sensor for unobtrusive respiratory monitoring is reported herein. Printing supports the frugality of the process and avoids complex fabrication. The sensor was mounted on a wearable mask, and the sensor console was fabricated. The console demonstrated the capability to detect the respiratory profile at room and low temperature (-26 °C) with an SNR of -12.85 dB. Developed sensors could nullify the impact of temperature and humidity and generate respiratory signals due to strain induced by breathing. A model experiment was conducted to support the fidelity of the strain mechanism. The console demonstrated excellent stability (over 500 cycles) with a sensitivity of -196.56 (0-0.17% strain) and 117.49 (0.17-0.34% strain). The console could accurately determine conditions like eupnea, tachypnoea, ., and transmit the data wirelessly Bluetooth. These findings solve major caveats in flexible sensor development by focusing on selectivity, sensitivity, and stability.
柔性应变传感器在人类医疗保健领域引起了关注。然而,与这种传感器的输出信号相关的串扰和噪声等问题往往会限制其准确性。因此,开发一种节约工程的应变传感器对于保证其大规模应用至关重要。本文报道了一种用于非侵入式呼吸监测的模板印刷石墨烯/液态弹性体无串扰应变传感器。印刷支持工艺的节约性,并避免了复杂的制造过程。该传感器被安装在可穿戴口罩上,并制作了传感器控制台。控制台演示了在室温及低温(-26°C)下检测呼吸轮廓的能力,信噪比为-12.85dB。所开发的传感器可以消除温度和湿度的影响,并由于呼吸引起的应变产生呼吸信号。进行了模型实验以支持应变机制的保真度。控制台具有出色的稳定性(超过 500 个循环),灵敏度为-196.56(0-0.17%应变)和 117.49(0.17-0.34%应变)。控制台可以准确地确定正常呼吸、呼吸过速等条件,并通过蓝牙无线传输数据。这些发现通过关注选择性、灵敏度和稳定性解决了柔性传感器开发中的主要问题。