$\require{mediawiki-texvc}$

연합인증

연합인증 가입 기관의 연구자들은 소속기관의 인증정보(ID와 암호)를 이용해 다른 대학, 연구기관, 서비스 공급자의 다양한 온라인 자원과 연구 데이터를 이용할 수 있습니다.

이는 여행자가 자국에서 발행 받은 여권으로 세계 각국을 자유롭게 여행할 수 있는 것과 같습니다.

연합인증으로 이용이 가능한 서비스는 NTIS, DataON, Edison, Kafe, Webinar 등이 있습니다.

한번의 인증절차만으로 연합인증 가입 서비스에 추가 로그인 없이 이용이 가능합니다.

다만, 연합인증을 위해서는 최초 1회만 인증 절차가 필요합니다. (회원이 아닐 경우 회원 가입이 필요합니다.)

연합인증 절차는 다음과 같습니다.

최초이용시에는
ScienceON에 로그인 → 연합인증 서비스 접속 → 로그인 (본인 확인 또는 회원가입) → 서비스 이용

그 이후에는
ScienceON 로그인 → 연합인증 서비스 접속 → 서비스 이용

연합인증을 활용하시면 KISTI가 제공하는 다양한 서비스를 편리하게 이용하실 수 있습니다.

ZnO Nanorod Integrated Flexible Carbon Fibers for Sweat Cortisol Detection

Acs applied electronic materials, v.2 no.2, 2020년, pp.499 - 509  

Madhu, Sekar (Department of Nanoscience and Technology , Bharathiar University , Coimbatore 641046 , Tamil Nadu , India) ,  Anthuuvan, Allen Joseph (Department of Nanoscience and Technology , Bharathiar University , Coimbatore 641046 , Tamil Nadu , India) ,  Ramasamy, Sriramprabha (Department of Nanoscience and Technology , Bharathiar University , Coimbatore 641046 , Tamil Nadu , India) ,  Manickam, Pandiaraj (Bio-MEMS and Microsystems Laboratory, Department of Electrical and Computer Engineering , Florida International University , Miami , Florida 33199 , United States) ,  Bhansali, Shekhar (Department of Nanoscience and Technology , Bharathiar University , Coimbatore 641046 , Tamil Nadu , India) ,  Nagamony, Ponpandian ,  Chinnuswamy, Viswanathan

Abstract AI-Helper 아이콘AI-Helper

Sensors fabricated on fabrics provide an elevated ease of use for wearable sensors. Such sensors will play a critical role in detecting the elevations in the concentrations of biochemical markers in human sweat. The ability of making such measurements is becoming an important tool for non-invasive a...

주제어

참고문헌 (47)

  1. Lee, Won Gu, Kim, Yun-Gon, Chung, Bong Geun, Demirci, Utkan, Khademhosseini, Ali. Nano/Microfluidics for diagnosis of infectious diseases in developing countries. Advanced drug delivery reviews, vol.62, no.4, 449-457.

  2. Watson, Samuel I., Sahota, Harvir, Taylor, Celia A., Chen, Yen-Fu, Lilford, Richard J.. Cost-effectiveness of health care service delivery interventions in low and middle income countries: a systematic review. Global health research and policy, vol.3, 17-.

  3. Shen, Yu, Tran, Thien-Toan, Modha, Sidharth, Tsutsui, Hideaki, Mulchandani, Ashok. A paper-based chemiresistive biosensor employing single-walled carbon nanotubes for low-cost, point-of-care detection. Biosensors & bioelectronics, vol.130, 367-373.

  4. Yager, Paul, Edwards, Thayne, Fu, Elain, Helton, Kristen, Nelson, Kjell, Tam, Milton R., Weigl, Bernhard H.. Microfluidic diagnostic technologies for global public health. Nature, vol.442, no.7101, 412-418.

  5. Chan, Cangel Pui Yee, Mak, Wing Cheung, Cheung, Kwan Yee, Sin, King Keung, Yu, Cheuk Man, Rainer, Timothy H., Renneberg, Reinhard. Evidence-Based Point-of-Care Diagnostics: Current Status and Emerging Technologies. Annual review of analytical chemistry, vol.6, 191-211.

  6. Yager, Paul, Domingo, Gonzalo J., Gerdes, John. Point-of-Care Diagnostics for Global Health. Annual review of biomedical engineering, vol.10, no.1, 107-144.

  7. Yang, Yiran, Gao, Wei. Wearable and flexible electronics for continuous molecular monitoring. Chemical Society reviews, vol.48, no.6, 1465-1491.

  8. Bandodkar, Amay J., Jia, Wenzhao, Yardımcı, Ceren, Wang, Xuan, Ramirez, Julian, Wang, Joseph. Tattoo-Based Noninvasive Glucose Monitoring: A Proof-of-Concept Study. Analytical chemistry, vol.87, no.1, 394-398.

  9. Matzeu, G., Florea, L., Diamond, D.. Advances in wearable chemical sensor design for monitoring biological fluids. Sensors and actuators. B, Chemical, vol.211, 403-418.

  10. Zimmermann, Jan, Reifler, Felix A., Fortunato, Giuseppino, Gerhardt, Lutz-Christian, Seeger, Stefan. A Simple, One-Step Approach to Durable and Robust Superhydrophobic Textiles. Advanced functional materials, vol.18, no.22, 3662-3669.

  11. Cheng, Yan, Zhu, Tianxue, Li, Shuhui, Huang, Jianying, Mao, Jiajun, Yang, Hui, Gao, Shouwei, Chen, Zhong, Lai, Yuekun. A novel strategy for fabricating robust superhydrophobic fabrics by environmentally-friendly enzyme etching. Chemical engineering journal, vol.355, 290-298.

  12. Wang, Heng‐Guo, Li, Wang, Liu, Da‐Peng, Feng, Xi‐Lan, Wang, Jin, Yang, Xiao‐Yang, Zhang, Xin‐bo, Zhu, Yujie, Zhang, Yu. Flexible Electrodes for Sodium‐Ion Batteries: Recent Progress and Perspectives. Advanced materials, vol.29, no.45, 1703012-.

  13. Manickam, Pandiaraj, Madhu, Sekar, Fernandez, Renny Edwin, Viswanathan, C, Bhansali, Shekhar. Fabric Based Wearable Biosensor for Continuous Monitoring of Steroids. ECS transactions, vol.77, no.11, 1841-1846.

  14. He, Yanghua, Matthews, Bryan, Wang, Jingyun, Song, Li, Wang, Xiaoxia, Wu, Gang. Innovation and challenges in materials design for flexible rechargeable batteries: from 1D to 3D. Journal of materials chemistry. A, Materials for energy and sustainability, vol.6, no.3, 735-753.

  15. Li, Lin, Wu, Zhong, Yuan, Shuang, Zhang, Xin-Bo. Advances and challenges for flexible energy storage and conversion devices and systems. Energy & environmental science, vol.7, no.7, 2101-2122.

  16. Zhu, Hua, Li, Zhou, Wei, Shao, Zongping, Chen, Xianjian. Advances in non-enzymatic glucose sensors based on metal oxides. Journal of materials chemistry. B, Materials for biology and medicine, vol.4, no.46, 7333-7349.

  17. Sahin, Bünyamin, Kaya, Tolga. Electrochemical amperometric biosensor applications of nanostructured metal oxides: a review. Materials research express, vol.6, no.4, 042003-.

  18. K.P.O., Mahesh, Shown, Indrajit, Chen, Li-Chyong, Chen, Kuei-Hsien, Tai, Yian. Flexible sensor for dopamine detection fabricated by the direct growth of α-Fe2O3 nanoparticles on carbon cloth. Applied surface science, vol.427, no.2, 387-395.

  19. Arya, Sunil K., Saha, Shibu, Ramirez-Vick, Jaime E., Gupta, Vinay, Bhansali, Shekhar, Singh, Surinder P.. Recent advances in ZnO nanostructures and thin films for biosensor applications: Review. Analytica chimica acta : an international journal devoted to all branches of analytical chemistry, vol.737, 1-21.

  20. Liu, H., Gu, C., Hou, C., Yin, Z., Fan, K., Zhang, M.. Plasma-assisted synthesis of carbon fibers/ZnO core-shell hybrids on carbon fiber templates for detection of ascorbic acid and uric acid. Sensors and actuators. B, Chemical, vol.224, 857-862.

  21. Singh, Aruna Chandra, Asif, M.H., Bacher, Gautam, Danielsson, Bengt, Willander, Magnus, Bhand, Sunil. Nanoimmunosensor based on ZnO nanorods for ultrasensitive detection of 17β-Estradiol. Biosensors & bioelectronics, vol.126, 15-22.

  22. Vabbina, Phani Kiran, Kaushik, Ajeet, Pokhrel, Nimesh, Bhansali, Shekhar, Pala, Nezih. Electrochemical cortisol immunosensors based on sonochemically synthesized zinc oxide 1D nanorods and 2D nanoflakes. Biosensors & bioelectronics, vol.63, 124-130.

  23. Yakimova, Rositza. ZnO materials and surface tailoring for biosensing. Frontiers in bioscience (Elite edition), vol.4, no.1, 254-278.

  24. Allen, Joseph Anthuvan, Murugesan, Duraisamy, Viswanathan, Chinnuswamy. Circumferential growth of zinc oxide nanostructure anchored over carbon fabric and its photocatalytic performance towards p-nitrophenol. Superlattices and microstructures, vol.125, 159-167.

  25. Yang, Chi, Gu, Baoxiang, Zhang, Dan, Ge, Cunwang, Tao, Huimin. Coaxial carbon fiber/ZnO nanorods as electrodes for the electrochemical determination of dopamine. Analytical methods : advancing methods and applications, vol.8, no.3, 650-655.

  26. Du, Yunzhe, Zhao, Feng, Liu, Li, Gao, Yunzhi, Xing, Lixin, Li, Qin, Fu, Chuankai, Zhong, Zhengxiang, Zhang, Xuanfeng. Improvement of bond strength between ZnO nanorods and carbon fibers using magnetron sputtered ZnO films as the interphase. CrystEngComm, vol.19, no.5, 868-875.

  27. Fei, Jie, Luo, Dan, Huang, Jianfeng, Zhang, Chao, Duan, Xiao, Zhang, Lijie. Growth of aligned ZnO nanorods on carbon fabric and its composite for superior mechanical and tribological performance. Surface & coatings technology, vol.344, 433-440.

  28. Madhu, Sekar, Manickam, Pandiaraj, Pierre, Michelle, Bhansali, Shekhar, Nagamony, Ponpandian, Chinnuswamy, Viswanathan. Nanostructured SnO2 integrated conductive fabrics as binder-free electrode for neurotransmitter detection. Sensors and actuators. A, Physical, vol.269, 401-411.

  29. Heikenfeld, Jason. Non‐invasive Analyte Access and Sensing through Eccrine Sweat: Challenges and Outlook circa 2016. Electroanalysis, vol.28, no.6, 1242-1249.

  30. Upasham, Sayali, Tanak, Ambalika, Jagannath, Badrinath, Prasad, Shalini. Development of ultra-low volume, multi-bio fluid, cortisol sensing platform. Scientific reports, vol.8, 16745-.

  31. He, Xuecheng, Xu, Tailin, Gu, Zhen, Gao, Wei, Xu, Li-Ping, Pan, Tingrui, Zhang, Xueji. Flexible and Superwettable Bands as a Platform toward Sweat Sampling and Sensing. Analytical chemistry, vol.91, no.7, 4296-4300.

  32. Bandodkar, A.J., Wang, J.. Non-invasive wearable electrochemical sensors: a review. Trends in biotechnology, vol.32, no.7, 363-371.

  33. Sekar, M., Pandiaraj, M., Bhansali, S., Ponpandian, N., Viswanathan, C.. Carbon fiber based electrochemical sensor for sweat cortisol measurement. Scientific reports, vol.9, 403-.

  34. Meng, Shangjun, Hong, Ying, Dai, Ziyang, Huang, Wei, Dong, Xiaochen. Simultaneous Detection of Dihydroxybenzene Isomers with ZnO Nanorod/Carbon Cloth Electrodes. ACS applied materials & interfaces, vol.9, no.14, 12453-12460.

  35. Athauda, Thushara J., Hari, Parameswar, Ozer, Ruya R.. Tuning Physical and Optical Properties of ZnO Nanowire Arrays Grown on Cotton Fibers. ACS applied materials & interfaces, vol.5, no.13, 6237-6246.

  36. Shanmugam, Nandhinee R, Muthukumar, Sriram, Prasad, Shalini. A review on ZnO-based electrical biosensors for cardiac biomarker detection. Future science OA, vol.3, no.4, FSO196-.

  37. Russell, Evan, Koren, Gideon, Rieder, Michael, Van Uum, Stan H. M.. The Detection of Cortisol in Human Sweat: Implications for Measurement of Cortisol in Hair. Therapeutic drug monitoring, vol.36, no.1, 30-34.

  38. Miao, Jianwei, Xiao, Fang-Xing, Yang, Hong Bin, Khoo, Si Yun, Chen, Jiazang, Fan, Zhanxi, Hsu, Ying-Ya, Chen, Hao Ming, Zhang, Hua, Liu, Bin. Hierarchical Ni-Mo-S nanosheets on carbon fiber cloth: A flexible electrode for efficient hydrogen generation in neutral electrolyte. Science advances, vol.1, no.7, e1500259-.

  39. Shilpa, Basavaraja, Basavanakote M., Majumder, Subhasish B., Sharma, Ashutosh. Electrospun hollow glassy carbon-reduced graphene oxide nanofibers with encapsulated ZnO nanoparticles: a free standing anode for Li-ion batteries. Journal of materials chemistry. A, Materials for energy and sustainability, vol.3, no.10, 5344-5351.

  40. Gopi, D., Indira, J., Kavitha, L., Sekar, M., Mudali, U. Kamachi. Synthesis of hydroxyapatite nanoparticles by a novel ultrasonic assisted with mixed hollow sphere template method. Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy, vol.93, 131-134.

  41. K.P.O., Mahesh, Shown, Indrajit, Chen, Li-Chyong, Chen, Kuei-Hsien, Tai, Yian. Flexible sensor for dopamine detection fabricated by the direct growth of α-Fe2O3 nanoparticles on carbon cloth. Applied surface science, vol.427, no.2, 387-395.

  42. Cuscó, Ramon, Alarcón-Lladó, Esther, Ibáñez, Jordi, Artús, Luis, Jiménez, Juan, Wang, Buguo, Callahan, Michael J.. Temperature dependence of Raman scattering inZnO. Physical review. B, Condensed matter and materials physics, vol.75, no.16, 165202-.

  43. Liu, Xianbin, Du, Hejun, Sun, Xiao Wei, Liu, Bo, Zhao, Dewei, Sun, Handong. Visible-light photoresponse in a hollow microtube–nanowire structure made of carbon-doped ZnO. CrystEngComm, vol.14, no.8, 2886-2890.

  44. Thangaraj, Rajendiran, Kumar, Annamalai Senthil. Graphitized mesoporous carbon modified glassy carbon electrode for selective sensing of xanthine, hypoxanthine and uric acid. Analytical methods : advancing methods and applications, vol.4, no.7, 2162-.

  45. Manickam, Pandiaraj, Vashist, Arti, Madhu, Sekar, Sadasivam, Mohanraj, Sakthivel, Arunkumar, Kaushik, Ajeet, Nair, Madhavan. Gold nanocubes embedded biocompatible hybrid hydrogels for electrochemical detection of H2O2. Bioelectrochemistry, vol.131, 107373-.

  46. Cruz, A.F.D., Norena, N., Kaushik, A., Bhansali, S.. A Low-Cost Miniaturized Potentiostat for Point-of-Care Diagnosis. Biosensors & bioelectronics, vol.62, 249-254.

  47. Pandiaraj, M., Benjamin, A.R., Madasamy, T., Vairamani, K., Arya, A., Sethy, N.K., Bhargava, K., Karunakaran, C.. A cost-effective volume miniaturized and microcontroller based cytochrome c assay. Sensors and actuators. A, Physical, vol.220, 290-297.

관련 콘텐츠

저작권 관리 안내
섹션별 컨텐츠 바로가기

AI-Helper ※ AI-Helper는 오픈소스 모델을 사용합니다.

AI-Helper 아이콘
AI-Helper
안녕하세요, AI-Helper입니다. 좌측 "선택된 텍스트"에서 텍스트를 선택하여 요약, 번역, 용어설명을 실행하세요.
※ AI-Helper는 부적절한 답변을 할 수 있습니다.

선택된 텍스트

맨위로