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Investigation of the Thermal-Force Coupling and Temperature Compensation of Embedded FBG Strain Sensor Journal article
Shen, Shunan, Xiong, Li, Pan, Hanwen, Ge, Dankai, Zhou, Wanhuan, Guo, Yongxing. Investigation of the Thermal-Force Coupling and Temperature Compensation of Embedded FBG Strain Sensor[J]. IEEE Sensors Journal, 2024, 24(13), 20645-20654.
Authors:  Shen, Shunan;  Xiong, Li;  Pan, Hanwen;  Ge, Dankai;  Zhou, Wanhuan; et al.
Favorite | TC[WOS]:1 TC[Scopus]:0  IF:4.3/4.2 | Submit date:2024/06/05
Embedded Fiber Bragg Grating (Fbg) Strain Sensor  Reinforced Concrete  Temperature Compensation  Thermal Strain  
Towards True In-situ Temperature Compensation Utilizing Multiple Parameter Decoupling for Resonant MEMS Sensors Subject to Blue Sideband Excitation Journal article
Xi, Jingqian, Zheng, Zhuoyue, Liu, Huafeng, Zhang, Pan, Zhao, Chun, Wang, Yuan, Wang, Chen, Kraft, Michael, Martins, Rui P., Mak, Pui In. Towards True In-situ Temperature Compensation Utilizing Multiple Parameter Decoupling for Resonant MEMS Sensors Subject to Blue Sideband Excitation[J]. IEEE Sensors Letters, 2024, 8(4), 2500804.
Authors:  Xi, Jingqian;  Zheng, Zhuoyue;  Liu, Huafeng;  Zhang, Pan;  Zhao, Chun; et al.
Favorite | TC[WOS]:0 TC[Scopus]:0  IF:2.2/2.2 | Submit date:2024/05/02
Blue-sideband Excitation (Bse)  Mechanical Sensors  Multiple Parameter Decoupling (Mpd)  Resonant Sensor  Temperature Compensation  
An in-situ online method for extracting Seebeck coefficient of thermopile infrared sensors across a wide temperature range (300–600 K) Journal article
Tang, Liqiang, Fu, Jianyu, Chen, Yong, Yuan, Tianhui, Hou, Ying, Chen, Dapeng. An in-situ online method for extracting Seebeck coefficient of thermopile infrared sensors across a wide temperature range (300–600 K)[J]. Measurement: Journal of the International Measurement Confederation, 2024, 226, 114101.
Authors:  Tang, Liqiang;  Fu, Jianyu;  Chen, Yong;  Yuan, Tianhui;  Hou, Ying; et al.
Favorite | TC[WOS]:0 TC[Scopus]:1  IF:5.2/4.8 | Submit date:2024/02/22
a Wide Temperature Range  In-situ Online Test  Seebeck Coefficients  Thermopile Infrared (Ir) Sensor  
Demodulation of DBR Fiber Laser Sensors With Speckle Patterns Journal article
Fang Zhao, Weihao Lin, Penglai Guo, Jie Hu, Shuaiqi Liu, Feihong Yu, Guomeng Zuo, Guoqing Wang, Huanhuan Liu, Jinna Chen, Yi Li, Perry Ping Shum, Liyang Shao. Demodulation of DBR Fiber Laser Sensors With Speckle Patterns[J]. IEEE Sensors Journal, 2023, 23(21), 26022-26030.
Authors:  Fang Zhao;  Weihao Lin;  Penglai Guo;  Jie Hu;  Shuaiqi Liu; et al.
Favorite | TC[WOS]:2 TC[Scopus]:4  IF:4.3/4.2 | Submit date:2023/12/04
Fiber Specklegram Sensor (Fss)  Laser Sensor  Salinity Measurement  Temperature Measurement  
Sub-5-Minute Ultrafast PCR using Digital Microfluidics Journal article
Wan, Liang, Li, Mingzhong, Law, Man Kay, Mak, Pui In, Martins, Rui P., Jia, Yanwei. Sub-5-Minute Ultrafast PCR using Digital Microfluidics[J]. Biosensors and Bioelectronics, 2023, 242, 115711.
Authors:  Wan, Liang;  Li, Mingzhong;  Law, Man Kay;  Mak, Pui In;  Martins, Rui P.; et al.
Favorite | TC[WOS]:7 TC[Scopus]:7  IF:10.7/9.9 | Submit date:2024/01/02
Chemical Temperature Sensor  Digital Microfluidics  Electrowetting-on-dielectrics  Ultrafast Polymerase Chain Reaction  
A 0.4-V 0.0294-mm2 Resistor-Based Temperature Sensor Achieving ±0.24 °C p2p Inaccuracy From40 °C to 125 °C and 385 fJ · K2 Resolution FoM in 65-nm CMOS Journal article
Dan Shi, Ka-Meng Lei, Rui P. Martins, Pui-In Mak. A 0.4-V 0.0294-mm2 Resistor-Based Temperature Sensor Achieving ±0.24 °C p2p Inaccuracy From40 °C to 125 °C and 385 fJ · K2 Resolution FoM in 65-nm CMOS[J]. IEEE JOURNAL OF SOLID-STATE CIRCUITS, 2023, 58(9), 2543-2553.
Authors:  Dan Shi;  Ka-Meng Lei;  Rui P. Martins;  Pui-In Mak
Favorite | TC[WOS]:3 TC[Scopus]:5  IF:4.6/5.6 | Submit date:2023/08/03
Digital-intensive Frequency-locked-loop (Dfll)  Internet-of-things (Iot)  Low Power  Resistor-based Temperature Sensor  Ultralow-voltage (Ulv)  
CuO@In2O3/ZnO Core-Shell Nanorods for Triethylamine Detection at Room Temperature Journal article
Zi,Baoye, Chen,Mingpeng, Zhu,Qin, Lu,Qingjie, Xiao,Bin, Deng,Zongming, Xu,Dong, Song,Zhenlin, Zhao,Jianhong, Zhang,Yumin, Zhu,Zhongqi, Zhang,Jin, Liu,Qingju. CuO@In2O3/ZnO Core-Shell Nanorods for Triethylamine Detection at Room Temperature[J]. ACS Applied Nano Materials, 2023, 6(8), 6963-6971.
Authors:  Zi,Baoye;  Chen,Mingpeng;  Zhu,Qin;  Lu,Qingjie;  Xiao,Bin; et al.
Favorite | TC[WOS]:15 TC[Scopus]:13  IF:5.3/5.4 | Submit date:2023/08/03
Core−shell Nanorod  Heterostructure  P−n Junction  Room Temperature  Tea Gas Sensor  
Temperature Fiber Sensor Based on 1-D CNN Incorporated Time-Stretch Method for Accurate Detection Journal article
Lin, Weihao, Liu, Yibin, Yu, Feihong, Zhao, Fang, Liu, Shuaiqi, Liu, Yuhui, Chen, Jinna, Vai, Mang I., Shum, Perry Ping, Shao, Li Yang. Temperature Fiber Sensor Based on 1-D CNN Incorporated Time-Stretch Method for Accurate Detection[J]. IEEE Sensors Journal, 2023, 23(6), 5773-5779.
Authors:  Lin, Weihao;  Liu, Yibin;  Yu, Feihong;  Zhao, Fang;  Liu, Shuaiqi; et al.
Favorite | TC[WOS]:7 TC[Scopus]:8  IF:4.3/4.2 | Submit date:2023/04/03
1-d Cnn  Fiber Temperature Sensor  Time-stretch Method  Temperature Sensors  Optical Fiber Sensors  Optical Fibers  Optical Fiber Dispersion  Interference  Demodulation  Claddings  
Subranging BJT-Based CMOS Temperature Sensor With a ±0.45 °C Inaccuracy (3σ) From −50 °C to 180 °C and a Resolution-FoM of 7.2 pJ·K² at 150 °C Journal article
Bo Wang, Man-Kay Law. Subranging BJT-Based CMOS Temperature Sensor With a ±0.45 °C Inaccuracy (3σ) From −50 °C to 180 °C and a Resolution-FoM of 7.2 pJ·K² at 150 °C[J]. IEEE JOURNAL OF SOLID-STATE CIRCUITS, 2022, 57(12), 3693-3703.
Authors:  Bo Wang;  Man-Kay Law
Favorite | TC[WOS]:10 TC[Scopus]:9  IF:4.6/5.6 | Submit date:2023/02/20
Bjt  Calibration  Double-sampling Adc  Lowleakage Switch  Subranging Readout  Temperature Sensor  
Deformable, transparent, high-performance, room-temperature oxygen sensors based on ion-conductive, environment-tolerant, and green organohydrogels Journal article
Lin, Yuanqing, Wu, Zixuan, Li, Chunwei, Ding, Qiongling, Tao, Kai, Zhai, Kankan, Chen, Meiwan, Zilberman, Meital, Xie, Xi, Wu, Jin. Deformable, transparent, high-performance, room-temperature oxygen sensors based on ion-conductive, environment-tolerant, and green organohydrogels[J]. EcoMat, 2022, 4(6), e12220.
Authors:  Lin, Yuanqing;  Wu, Zixuan;  Li, Chunwei;  Ding, Qiongling;  Tao, Kai; et al.
Favorite | TC[WOS]:22 TC[Scopus]:18 | Submit date:2023/01/31
Anti-freezing And Anti-drying Hydrogel  Conductive And Green Organohydrogel  Redox Reaction Sensing Mechanism  Stretchable And Room-temperature Oxygen Sensor  Xylitol And Sorbitol