Ahn Junhyuk, Choi Hyung Jin, Bang Junsung, Son Gayeon, Oh Soong Ju
Department of Materials Science and Engineering, Korea University, Seoul, 02841, Republic of Korea.
Department of English Language and Industry, Kwangwoon University, Seoul, 01897, Republic of Korea.
Nano Converg. 2022 Oct 8;9(1):46. doi: 10.1186/s40580-022-00337-3.
Human voice recognition techniques have remarkable potential for clinical applications because information from acoustic signals can reflect human body conditions. This paper reports the fabrication of Ag nanocrystal (NC)-based multiaxial wearable strain gauge sensors by ink-lithography for voice recognition systems. Benefiting from the one-step-device-fabrication strategy of ink-lithography, which can yield Ag NC patterns with specific dimensions and endow physical properties, the Ag NC-based multiaxial strain sensors can be fabricated on an ultrathin substrate (~ 6 μm). Additionally, the coffee-ring effect can be induced onto the Ag NC patterns to realize high sensitivity and angle dependence (gauge factors [Formula: see text] = 11.7 ± 1.2 and [Formula: see text] = 105.5 ± 20.1); moreover, the voice onset time for voice recognition can be detected by the sensors. These features assist in distinguishing between voiced and voiceless plosive contrasts via measurements of contact-based voice onset time differences and can act as a cornerstone for further advancements in wearable sensors as well as voice recognition and analysis.
由于声学信号中的信息可以反映人体状况,人类语音识别技术在临床应用中具有显著潜力。本文报道了通过喷墨光刻技术制备用于语音识别系统的基于银纳米晶体(NC)的多轴可穿戴应变计传感器。得益于喷墨光刻的一步式器件制造策略,该策略能够产生具有特定尺寸的银纳米晶体图案并赋予其物理特性,基于银纳米晶体的多轴应变传感器可以在超薄基板(约6μm)上制造。此外,可以在银纳米晶体图案上诱导产生咖啡环效应,以实现高灵敏度和角度依赖性(应变片系数[公式:见正文] = 11.7 ± 1.2和[公式:见正文] = 105.5 ± 20.1);此外,传感器可以检测语音识别的语音起始时间。这些特性有助于通过测量基于接触的语音起始时间差异来区分有声和无声爆破音对比,并且可以作为可穿戴传感器以及语音识别和分析进一步发展的基石。