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NTIS 바로가기ACS applied materials & interfaces, v.12 no.14, 2020년, pp.16691 - 16699
Choi, Han Byul (Department of Materials Science and Engineering , Korea Advanced Institute of Science and Technology (KAIST) , Daejeon 34141 , Republic of Korea) , Oh, Jinwon (Department of Materials Science and Engineering , Korea Advanced Institute of Science and Technology (KAIST) , Daejeon 34141 , Republic of Korea) , Kim, Youngsoo (Department of Mechanical Engineering , Korea Advanced Institute of Science and Technology (KAIST) , Daejeon 34141 , Republic of Korea) , Pyatykh, Mikhail (Department of Materials Science and Engineering , Korea Advanced Institute of Science and Technology (KAIST) , Daejeon 34141 , Republic of Korea) , Chang Yang, Jun (Department of Materials Science and Engineering , Korea Advanced Institute of Science and Technology (KAIST) , Daejeon 34141 , Republic of Korea) , Ryu, Seunghwa (Department of Mechanical Engineering , Korea Advanced Institute of Science and Technol) , Park, Steve
The demand for display technology is expected to increase with the continuous spread of portable electronics and with the expected emergence of flexible, wearable, and transparent display devices. A touch screen is a critical component in display technology that enables user interface operations, an...
Kim, Jong‐Woo, Myoung, Jae‐Min. Flexible and Transparent Electrochromic Displays with Simultaneously Implementable Subpixelated Ion Gel‐Based Viologens by Multiple Patterning. Advanced functional materials, vol.29, no.13, 1808911-.
Chen, Hai-Wei, Lee, Jiun-Haw, Lin, Bo-Yen, Chen, Stanley, Wu, Shin-Tson. Liquid crystal display and organic light-emitting diode display: present status and future perspectives. Light, science & applications, vol.7, no.3, 17168-.
Yang, Jun Chang, Mun, Jaewan, Kwon, Se Young, Park, Seongjun, Bao, Zhenan, Park, Steve. Electronic Skin: Recent Progress and Future Prospects for Skin‐Attachable Devices for Health Monitoring, Robotics, and Prosthetics. Advanced materials, vol.31, no.48, 1904765-.
Ryu, Jeongjae, Kim, Jaegyu, Oh, Jinwon, Lim, Seongjin, Sim, Joo Yong, Jeon, Jessie S., No, Kwangsoo, Park, Steve, Hong, Seungbum. Intrinsically stretchable multi-functional fiber with energy harvesting and strain sensing capability. Nano energy, vol.55, 348-353.
Chun, Sungwoo, Son, Wonkyeong, Kim, Da Wan, Lee, Jihyun, Min, Hyeongho, Jung, Hachul, Kwon, Dahye, Kim, A-Hee, Kim, Young-Jin, Lim, Sang Kyoo, Pang, Changhyun, Choi, Changsoon. Water-Resistant and Skin-Adhesive Wearable Electronics Using Graphene Fabric Sensor with Octopus-Inspired Microsuckers. ACS applied materials & interfaces, vol.11, no.18, 16951-16957.
Kim, So Young, Kim, Yongchan, Cho, Changhyeon, Choi, Hanbin, Park, Han Wool, Lee, Dayoon, Heo, Eunah, Park, Sangsik, Lee, Hojin, Kim, Do Hwan. Deformable Ionic Polymer Artificial Mechanotransducer with an Interpenetrating Nanofibrillar Network. ACS applied materials & interfaces, vol.11, no.32, 29350-29359.
Tan, Yu Jun, Godaba, Hareesh, Chen, Ge, Tan, Siew Ting Melissa, Wan, Guanxiang, Li, Guojingxian, Lee, Pui Mun, Cai, Yongqing, Li, Si, Shepherd, Robert F., Ho, John S., Tee, Benjamin C. K.. A transparent, self-healing and high-κ dielectric for low-field-emission stretchable optoelectronics. Nature materials, vol.19, no.2, 182-188.
Lai, Ying‐Chih, Wu, Hsing‐Mei, Lin, Heng‐Chuan, Chang, Chih‐Li, Chou, Ho‐Hsiu, Hsiao, Yung‐Chi, Wu, Yan‐Cheng. Entirely, Intrinsically, and Autonomously Self‐Healable, Highly Transparent, and Superstretchable Triboelectric Nanogenerator for Personal Power Sources and Self‐Powered Electronic Skins. Advanced functional materials, vol.29, no.40, 1904626-.
Gwang Jun Lee, Sang Kook Lee, Hong Kun Lyu, Jae Eun Jang. External Light Noise-Robust Multi-Touch Screen Using Frame Data Differential Method. Journal of display technology, vol.11, no.9, 759-763.
Hyun-Sik Kim, Kwan-Young Han. High-SNR Capacitive Multi-Touch Sensing Technique for AMOLED Display Panels. IEEE sensors journal, vol.16, no.4, 859-860.
Guarneri, I.; Capra, A.; Farinella, G. M.; Cristaldi, F.; Battiato, S.; Ieee. Multi Touch Shape Recognition for Projected Capacitive Touch Screen. Proceedings of IEEE International Conference on Computer Vision Theory and Applications (VISAPP) , 2014; 3, pp 111-117.
Kim, Kyun Kyu, Ha, InHo, Won, Philip, Seo, Deog-Gyu, Cho, Kyu-Jin, Ko, Seung Hwan. Transparent wearable three-dimensional touch by self-generated multiscale structure. Nature communications, vol.10, no.1, 2582-.
Proceedings of IEEE Haptics Symposium Sinclair M. 1 2014
Sun, Kahyun, Ko, Hangil, Park, Hyun‐Ha, Seong, Minho, Lee, Sang‐Hyeon, Yi, Hoon, Park, Hyung Wook, Kim, Tae‐il, Pang, Changhyun, Jeong, Hoon Eui. Hybrid Architectures of Heterogeneous Carbon Nanotube Composite Microstructures Enable Multiaxial Strain Perception with High Sensitivity and Ultrabroad Sensing Range. Small, vol.14, no.52, 1803411-.
Yang, Lei, Liu, Yu, Filipe, Carlos D. M., Ljubic, Darko, Luo, Yingwu, Zhu, He, Yan, Jiaxing, Zhu, Shiping. Development of a Highly Sensitive, Broad-Range Hierarchically Structured Reduced Graphene Oxide/PolyHIPE Foam for Pressure Sensing. ACS applied materials & interfaces, vol.11, no.4, 4318-4327.
Tian, He, Shu, Yi, Wang, Xue-Feng, Mohammad, Mohammad Ali, Bie, Zhi, Xie, Qian-Yi, Li, Cheng, Mi, Wen-Tian, Yang, Yi, Ren, Tian-Ling. A Graphene-Based Resistive Pressure Sensor with Record-High Sensitivity in a Wide Pressure Range. Scientific reports, vol.5, 8603-.
Zhang, Yanli, Fang, Yunsheng, Li, Jia, Zhou, Qihao, Xiao, Yongjun, Zhang, Kui, Luo, Beibei, Zhou, Jun, Hu, Bin. Dual-Mode Electronic Skin with Integrated Tactile Sensing and Visualized Injury Warning. ACS applied materials & interfaces, vol.9, no.42, 37493-37500.
Pan, Lijia, Chortos, Alex, Yu, Guihua, Wang, Yaqun, Isaacson, Scott, Allen, Ranulfo, Shi, Yi, Dauskardt, Reinhold, Bao, Zhenan. An ultra-sensitive resistive pressure sensor based on hollow-sphere microstructure induced elasticity in conducting polymer film. Nature communications, vol.5, 3002-.
Lee, Youngoh, Park, Jonghwa, Cho, Soowon, Shin, Young-Eun, Lee, Hochan, Kim, Jinyoung, Myoung, Jinyoung, Cho, Seungse, Kang, Saewon, Baig, Chunggi, Ko, Hyunhyub. Flexible Ferroelectric Sensors with Ultrahigh Pressure Sensitivity and Linear Response over Exceptionally Broad Pressure Range. ACS nano, vol.12, no.4, 4045-4054.
Razak, Abdul Hadi Abdul, Zayegh, Aladin, Begg, Rezaul K., Wahab, Yufridin. Foot Plantar Pressure Measurement System: A Review. Sensors, vol.12, no.7, 9884-9912.
Hu, Yijie, Zhuo, Hao, Chen, Zehong, Wu, Kunze, Luo, Qingsong, Liu, Qingzhong, Jing, Shuangshuang, Liu, Chuanfu, Zhong, Linxin, Sun, Runcang, Peng, Xinwen. Superelastic Carbon Aerogel with Ultrahigh and Wide-Range Linear Sensitivity. ACS applied materials & interfaces, vol.10, no.47, 40641-40650.
Xu, Minxuan, Li, Feng, Zhang, Zhenyun, Shen, Tao, Qi, Junjie. Piezoresistive Sensors Based on rGO 3D Microarchitecture: Coupled Properties Tuning in Local/Integral Deformation. Advanced electronic materials, vol.5, no.1, 1800461-.
Wang, Zhihui, Zhang, Ling, Liu, Jin, Jiang, Hao, Li, Chunzhong. Flexible hemispheric microarrays of highly pressure-sensitive sensors based on breath figure method. Nanoscale, vol.10, no.22, 10691-10698.
Bae, Geun Yeol, Han, Joong Tark, Lee, Giwon, Lee, Siyoung, Kim, Sung Won, Park, Sangsik, Kwon, Jimin, Jung, Sungjune, Cho, Kilwon. Pressure/Temperature Sensing Bimodal Electronic Skin with Stimulus Discriminability and Linear Sensitivity. Advanced materials, vol.30, no.43, 1803388-.
Huang, Yan, Chen, Yun, Fan, Xiangyu, Luo, Ningqi, Zhou, Shuang, Chen, Shih‐Chi, Zhao, Ni, Wong, Ching Ping. Wood Derived Composites for High Sensitivity and Wide Linear‐Range Pressure Sensing. Small, vol.14, no.31, 1801520-.
Chen, Wenjun, Gui, Xuchun, Liang, Binghao, Yang, Rongliang, Zheng, Yongjia, Zhao, Chengchun, Li, Xinming, Zhu, Hai, Tang, Zikang. Structural Engineering for High Sensitivity, Ultrathin Pressure Sensors Based on Wrinkled Graphene and Anodic Aluminum Oxide Membrane. ACS applied materials & interfaces, vol.9, no.28, 24111-24117.
Ren, Huaying, Zheng, Liming, Wang, Guorui, Gao, Xin, Tan, Zhenjun, Shan, Jingyuan, Cui, Lingzhi, Li, Ke, Jian, Muqiang, Zhu, Liangchao, Zhang, Yingying, Peng, Hailin, Wei, Di, Liu, Zhongfan. Transfer-Medium-Free Nanofiber-Reinforced Graphene Film and Applications in Wearable Transparent Pressure Sensors. ACS nano, vol.13, no.5, 5541-5548.
Lee, Donghwa, Kim, Jongyoun, Kim, Honggi, Heo, Hyojung, Park, Kyutae, Lee, Youngu. High-performance transparent pressure sensors based on sea-urchin shaped metal nanoparticles and polyurethane microdome arrays for real-time monitoring. Nanoscale, vol.10, no.39, 18812-18820.
Woo, Ho Kun, Kim, Haneun, Jeon, Sanghyun, Lee, Woo Seok, Ahn, Junhyuk, Bang, Junsung, Kang, Min Su, Oh, Soong Ju. One-step chemical treatment to design an ideal nanospacer structure for a highly sensitive and transparent pressure sensor. Journal of materials chemistry. C, Materials for optical and electronic devices, vol.7, no.17, 5059-5066.
Chun, Sungwoo, Kim, Da Wan, Kim, Jiwon, Pang, Changhyun. A transparent, glue-free, skin-attachable graphene pressure sensor with micropillars for skin-elasticity measurement. Nanotechnology, vol.30, no.33, 335501-.
Pyo, Soonjae, Choi, Jungwook, Kim, Jongbaeg. Flexible, Transparent, Sensitive, and Crosstalk‐Free Capacitive Tactile Sensor Array Based on Graphene Electrodes and Air Dielectric. Advanced electronic materials, vol.4, no.1, 1700427-.
Liu, Shi-Yu, Lian, Lu, Pan, Jin, Lu, Jian-Gang, Shieh, Han-Ping D.. Highly Sensitive and Optically Transparent Resistive Pressure Sensors Based on a Graphene/Polyaniline-Embedded PVB Film. IEEE transactions on electron devices, vol.65, no.5, 1939-1945.
Liu, Jialin, He, Tengyu, Fang, Guangqiang, Wang, Ranran, Kamoun, Elbadawy A., Yao, Jinrong, Shao, Zhengzhong, Chen, Xin. Environmentally responsive composite films fabricated using silk nanofibrils and silver nanowires. Journal of materials chemistry. C, Materials for optical and electronic devices, vol.6, no.47, 12940-12947.
Shi, Jidong, Wang, Liu, Dai, Zhaohe, Zhao, Lingyu, Du, Mingde, Li, Hongbian, Fang, Ying. Multiscale Hierarchical Design of a Flexible Piezoresistive Pressure Sensor with High Sensitivity and Wide Linearity Range. Small, vol.14, no.27, 1800819-.
Bae, Geun Yeol, Pak, Sang Woo, Kim, Daegun, Lee, Giwon, Kim, Do Hwan, Chung, Yoonyoung, Cho, Kilwon. Linearly and Highly Pressure‐Sensitive Electronic Skin Based on a Bioinspired Hierarchical Structural Array. Advanced materials, vol.28, no.26, 5300-5306.
Hwang, Byeong-Ung, Zabeeb, Arsalan, Trung, Tran Quang, Wen, Long, Lee, Jae Deuk, Choi, Young-In, Lee, Han-Byeol, Kim, Ju Hyun, Han, Jeon Geon, Lee, Nae-Eung. A transparent stretchable sensor for distinguishable detection of touch and pressure by capacitive and piezoresistive signal transduction. NPG Asia Materials, vol.11, no.1, 23-.
Lai, Jialiang, Zhou, Hongwei, Jin, Zhaoyang, Li, Shuangli, Liu, Hanbin, Jin, Xilang, Luo, Chunyan, Ma, Aijie, Chen, Weixing. Highly Stretchable, Fatigue-Resistant, Electrically Conductive, and Temperature-Tolerant Ionogels for High-Performance Flexible Sensors. ACS applied materials & interfaces, vol.11, no.29, 26412-26420.
Xie, Wenke, Duan, Jiangjiang, Wang, Hui, Li, Jia, Liu, Rong, Yu, Boyang, Liu, Shiyou, Zhou, Jun. Ultra-stretchable, bio-inspired ionic skins that work stably in various harsh environments. Journal of materials chemistry. A, Materials for energy and sustainability, vol.6, no.47, 24114-24119.
Yin, Xiang‐Yu, Zhang, Yue, Xiao, Junfeng, Moorlag, Carolyn, Yang, Jun. Monolithic Dual‐Material 3D Printing of Ionic Skins with Long‐Term Performance Stability. Advanced functional materials, vol.29, no.39, 1904716-.
Kim, Hyeohn, Kim, Gwangmook, Kim, Taehoon, Lee, Sangwoo, Kang, Donyoung, Hwang, Min‐Soo, Chae, Youngcheol, Kang, Shinill, Lee, Hyungsuk, Park, Hong‐Gyu, Shim, Wooyoung. Transparent, Flexible, Conformal Capacitive Pressure Sensors with Nanoparticles. Small, vol.14, no.8, 1703432-.
Pang, Yu, Zhang, Kunning, Yang, Zhen, Jiang, Song, Ju, Zhenyi, Li, Yuxing, Wang, Xuefeng, Wang, Danyang, Jian, Muqiang, Zhang, Yingying, Liang, Renrong, Tian, He, Yang, Yi, Ren, Tian-Ling. Epidermis Microstructure Inspired Graphene Pressure Sensor with Random Distributed Spinosum for High Sensitivity and Large Linearity. ACS nano, vol.12, no.3, 2346-2354.
Nie, Pu, Wang, Ranran, Xu, Xiaojuan, Cheng, Yin, Wang, Xiao, Shi, Liangjing, Sun, Jing. High-Performance Piezoresistive Electronic Skin with Bionic Hierarchical Microstructure and Microcracks. ACS applied materials & interfaces, vol.9, no.17, 14911-14919.
Kim, Kang-Hyun, Hong, Soon Kyu, Jang, Nam-Su, Ha, Sung-Hun, Lee, Hyung Woo, Kim, Jong-Man. Wearable Resistive Pressure Sensor Based on Highly Flexible Carbon Composite Conductors with Irregular Surface Morphology. ACS applied materials & interfaces, vol.9, no.20, 17499-17507.
Lee, Serin, Oh, Jinwon, Yang, Jun Chang, Sim, Joo Yong, Ryu, Jeongjae, Kim, Jin‐Oh, Park, Steve. A Highly Sensitive Bending Sensor Based on Controlled Crack Formation Integrated with an Energy Harvesting Pyramid Layer. Advanced materials technologies, vol.3, no.12, 1800307-.
Yang, Jun Chang, Kim, Jin-Oh, Oh, Jinwon, Kwon, Se Young, Sim, Joo Yong, Kim, Da Won, Choi, Han Byul, Park, Steve. Microstructured Porous Pyramid-Based Ultrahigh Sensitive Pressure Sensor Insensitive to Strain and Temperature. ACS applied materials & interfaces, vol.11, no.21, 19472-19480.
Worfolk, Brian J., Andrews, Sean C., Park, Steve, Reinspach, Julia, Liu, Nan, Toney, Michael F., Mannsfeld, Stefan C. B., Bao, Zhenan. Ultrahigh electrical conductivity in solution-sheared polymeric transparent films. Proceedings of the National Academy of Sciences of the United States of America, vol.112, no.46, 14138-14143.
Mochizuki, Takeo, Takigami, Yuki, Kondo, Takahiro, Okuzaki, Hidenori. Fabrication of flexible transparent electrodes using PEDOT:PSS and application to resistive touch screen panels. Journal of applied polymer science, vol.135, no.10, 45972-.
Lee, Jin Ho, Jeong, Yu Ra, Lee, Geumbee, Jin, Sang Woo, Lee, Yong Hui, Hong, Soo Yeong, Park, Heun, Kim, Jung Wook, Lee, Sang-Soo, Ha, Jeong Sook. Highly Conductive, Stretchable, and Transparent PEDOT:PSS Electrodes Fabricated with Triblock Copolymer Additives and Acid Treatment. ACS applied materials & interfaces, vol.10, no.33, 28027-28035.
Zhao, Liang, Chen, Fuqian, Huang, Wenyi, Bao, Huayu, Hu, Yingjie, Huang, Xin-an, Deng, Tao, Liu, Fang. A fluorescence turn-on assay for simple and sensitive determination of hemin and blood stains. Sensors and actuators. B, Chemical, vol.304, 127392-.
Gidde, Ranjitsinha R, Pawar, Prashant M. On effect of viscoelastic characteristics of polymers on performance of micropump. Advances in mechanical engineering, vol.9, no.2, 1687814017691211-.
Valentin, Jules D.P., Qin, Xiao-Hua, Fessele, Claudia, Straub, Hervé, van der Mei, Henny C., Buhmann, Matthias T., Maniura-Weber, Katharina, Ren, Qun. Substrate viscosity plays an important role in bacterial adhesion under fluid flow. Journal of colloid and interface science, vol.552, 247-257.
Oh, Jinwon, Kim, Jin‐Oh, Kim, Yunjoo, Choi, Han Byul, Yang, Jun Chang, Lee, Serin, Pyatykh, Mikhail, Kim, Jung, Sim, Joo Yong, Park, Steve. Highly Uniform and Low Hysteresis Piezoresistive Pressure Sensors Based on Chemical Grafting of Polypyrrole on Elastomer Template with Uniform Pore Size. Small, vol.15, no.33, 1901744-.
Kim, Jin-Oh, Kwon, Se Young, Kim, Youngsoo, Choi, Han Byul, Yang, Jun Chang, Oh, Jinwon, Lee, Hyeon Seok, Sim, Joo Yong, Ryu, Seunghwa, Park, Steve. Highly Ordered 3D Microstructure-Based Electronic Skin Capable of Differentiating Pressure, Temperature, and Proximity. ACS applied materials & interfaces, vol.11, no.1, 1503-1511.
Oh, Jinwon, Yang, Jun Chang, Kim, Jin-Oh, Park, Hyunkyu, Kwon, Se Young, Lee, Serin, Sim, Joo Yong, Oh, Hyun Woo, Kim, Jung, Park, Steve. Pressure Insensitive Strain Sensor with Facile Solution-Based Process for Tactile Sensing Applications. ACS nano, vol.12, no.8, 7546-7553.
Chen, Chang-Wen, Hsiao, Sheng-Yi, Chen, Chien-Yu, Kang, Hao-Wei, Huang, Zheng-Yu, Lin, Hao-Wu. Optical properties of organometal halide perovskite thin films and general device structure design rules for perovskite single and tandem solar cells. Journal of materials chemistry. A, Materials for energy and sustainability, vol.3, no.17, 9152-9159.
Schneider, Florian, Draheim, Jan, Kamberger, Robert, Wallrabe, Ulrike. Process and material properties of polydimethylsiloxane (PDMS) for Optical MEMS. Sensors and actuators. A, Physical, vol.151, no.2, 95-99.
Johnston, I D, McCluskey, D K, Tan, C K L, Tracey, M C. Mechanical characterization of bulk Sylgard 184 for microfluidics and microengineering. Journal of micromechanics and microengineering.: structures, devices, and systems, vol.24, no.3, 035017-.
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