keyword
https://read.qxmd.com/read/38669162/self-powered-photodetectors-a-device-engineering-perspective
#1
REVIEW
Varun Goel, Yogesh Kumar, Gopal Rawat, Hemant Kumar
Nanoscale self-powered photodetectors that can work without any external source of energy are required for future applications. There is potential demand for these devices in areas like wireless surveillance, weather forecasting, remote monitoring, and places where the availability of power is scarce. This study provides an overview of state of the art research trends and improvements in self-powered photodetectors. A device engineering perspective for improvement in the figures of merit has been presented along with a description of additional effects like pyro-phototronic, piezo-phototronic, and surface plasmonics...
April 26, 2024: Nanoscale
https://read.qxmd.com/read/38669057/finite-element-analysis-and-design-of-a-flexible-thermoelectric-generator-with-a-rhombus-gap-structure
#2
JOURNAL ARTICLE
Chang Li, Junfeng Jin, Wei Cao, Xiaolong Sun, Qianfeng Ding, Yue Hou, Ziyu Wang
Flexible thermoelectric generators (f-TEGs) offer an opportunity to realize wearable, self-powered electronic devices. A typical f-TEG consists of flexible electrodes and rigid thermoelectric (TE) legs in a flexible package. In the realm of f-TEGs utilizing flexible electrodes and TE cuboids, our unwavering objective lies in the attainment of enhanced flexibility and elevated energy conversion efficiency. In this paper, we employ a quasi-three-dimensional thermal model to design an f-TEG with a rhombus gap structure (E/A-RhTEG) with its optimized performance validated by simulation and experiment...
April 26, 2024: ACS Applied Materials & Interfaces
https://read.qxmd.com/read/38668830/metal-halide-perovskite-submicrometer-thick-films-for-ultra-stable-self-powered-direct-x-ray-detectors
#3
JOURNAL ARTICLE
Marco Girolami, Fabio Matteocci, Sara Pettinato, Valerio Serpente, Eleonora Bolli, Barbara Paci, Amanda Generosi, Stefano Salvatori, Aldo Di Carlo, Daniele M Trucchi
Metal-halide perovskites are revolutionizing the world of X-ray detectors, due to the development of sensitive, fast, and cost-effective devices. Self-powered operation, ensuring portability and low power consumption, has also been recently demonstrated in both bulk materials and thin films. However, the signal stability and repeatability under continuous X-ray exposure has only been tested up to a few hours, often reporting degradation of the detection performance. Here it is shown that self-powered direct X-ray detectors, fabricated starting from a FAPbBr3 submicrometer-thick film deposition onto a mesoporous TiO2 scaffold, can withstand a 26-day uninterrupted X-ray exposure with negligible signal loss, demonstrating ultra-high operational stability and excellent repeatability...
April 26, 2024: Nano-Micro Letters
https://read.qxmd.com/read/38668680/self-powered-immunoassay-of-norovirus-in-human-stools-by-%C3%AF-electron-rich-homojunction-for-enhanced-charge-transfer
#4
JOURNAL ARTICLE
Yun Chen, Yunfan Jia, Xingwang Zhu, Li Xu, Henan Li, Huaming Li
Norovirus (NoV) stands as a significant causative agent of nonbacterial acute gastroenteritis on a global scale, presenting a substantial threat to public health. Hence, the development of simple and rapid analytical techniques for NoV detection holds great importance in preventing and controlling the outbreak of the epidemic. In this work, a self-powered photoelectrochemical (PEC) immunosensor of NoV capsid protein (VP1) was proposed by the π-electron-rich carbon nitride homojunction (ER-CNH) as the photoanode...
April 26, 2024: ACS Sensors
https://read.qxmd.com/read/38668214/self-powered-uv-photodetector-construction-of-the-p-edos-tth-copolymer-modified-zno-nanoarray
#5
JOURNAL ARTICLE
Aygul Kadir, Tursun Abdiryim, Xiong Liu, Ruxangul Jamal, Yaolong Zhang
To solve the problem that zinc oxide nanorods (ZnO NRs)-based self-powered ultraviolet (UV) photodetectors cannot obtain both higher responsiveness and shorter response time, P(EDOS-TTh) was prepared using 3,4-ethylenedioxyselenphene (EDOS) and terthiophene (TTh) as copolymers, which modify the ZnO NRs surface, and the ZnO/P(EDOS-TTh) P-N junction self-powered UV device is assembled. The effect of the number of electrochemical polymerization cycles on the UV photodetection performance of ZnO/P(EDOS-TTh) P-N heterojunction was studied by adjusting the number of electrochemical polymerization cycles at the monomer molar ratio of 1:1...
April 20, 2024: Nanomaterials
https://read.qxmd.com/read/38660705/investigations-on-optical-absorption-and-the-pyro-phototronic-effect-with-selectively-patterned-black-silicon-for-advanced-photodetection
#6
JOURNAL ARTICLE
Charumathi Nataraj, Kallol Mohanta, Geetha Priyadarshini Badhirappan
A novel property existing in the stain-etching technique that eliminates the need for expensive etchant masks in the texturization process of silicon wafers was identified. Through the combination of grayscale lithography and stain-etching methodologies, selective patterning of silicon with AR-P 3510 T, a positive-photoresist mask, was carried out. The etch area ratio was varied in nine different patterns of various feature sizes ranging from 400 to 1500 μm. The optical characteristics of the patterned substrates were determined from diffuse reflectance spectroscopy analysis, and the results were supported with finite-difference time-domain simulations...
April 25, 2024: ACS Applied Materials & Interfaces
https://read.qxmd.com/read/38656962/a-spin-charge-regulated-self-powered-nanogenerator-for-simultaneous-pyro-magneto-electric-energy-harvesting
#7
JOURNAL ARTICLE
Dalip Saini, Dipanjan Sengupta, Bidya Mondal, Hari Krishna Mishra, Rubina Ghosh, Prakash Nath Vishwakarma, Shanker Ram, Dipankar Mandal
In view of the depletion of natural energy resources, harvesting energy from waste is a revolution to simultaneously capture, unite, and recycle various types of waste energies in flexible devices. Thus, in this work, a spin-charge-regulated pyro-magneto-electric nanogenerator is devised at a well-known ferroelectric P(VDF-TrFE) copolymer. It promptly stores thermal-magnetic energies in a "capacitor" that generates electricity at room temperature. The ferroelectric domains are regulated to slip at the interfaces (also twins) of duly promoting polarization and other properties...
April 24, 2024: ACS Nano
https://read.qxmd.com/read/38654624/self-powered-biomimetic-pressure-sensor-based-on-mn-ag-electrochemical-reaction-for-monitoring-rehabilitation-training-of-athletes
#8
JOURNAL ARTICLE
Ziyan Yang, Qingzhou Wang, Huixin Yu, Qing Xu, Yuanyue Li, Minghui Cao, Rajendra Dhakal, Yang Li, Zhao Yao
Self-powered pressure detection using smart wearable devices is the subject of intense research attention, which is intended to address the critical need for prolonged and uninterrupted operations. Current piezoelectric and triboelectric sensors well respond to dynamic stimuli while overlooking static stimuli. This study proposes a dual-response potentiometric pressure sensor that responds to both dynamic and static stimuli. The proposed sensor utilizes interdigital electrodes with MnO2 /carbon/polyvinyl alcohol (PVA) as the cathode and conductive silver paste as the anode...
April 23, 2024: Advanced Science (Weinheim, Baden-Wurttemberg, Germany)
https://read.qxmd.com/read/38645721/hybrid-triboelectric-piezoelectric-nanogenerator-for-long-term-load-monitoring-in-total-knee-replacements
#9
JOURNAL ARTICLE
Mahmood Chahari, Emre Salman, Milutin Stanacevic, Ryan Willing, Shahrzad Towfighian
A self-powered and durable pressure sensor for large-scale pressure detection on the knee implant would be highly advantageous for designing long-lasting and reliable knee implants as well as obtaining information about knee function after the operation. The purpose of this study is to develop a robust energy harvester that can convert wide ranges of pressure to electricity to power a load sensor inside the knee implant. To efficiently convert loads to electricity, we design a cuboid-array-structured tribo-pizoelectric nanogenerator (TPENG) in vertical contact mode inside a knee implant package...
May 1, 2024: Smart Materials & Structures
https://read.qxmd.com/read/38644345/wafer-scale-gallium-nitride-integrated-electrode-toward-robust-high-temperature-energy-storage
#10
JOURNAL ARTICLE
Songyang Lv, Shouzhi Wang, Jiaoxian Yu, Ge Tian, Guodong Wang, Pengfei An, Kepeng Song, Bo Ma, Yangyang Li, Xiangang Xu, Lei Zhang
Gallium Nitride (GaN), as the representative of wide bandgap semiconductors, has great prospects in accomplishing rapid charge delivery under high-temperature environments thanks to excellent structural stability and electron mobility. However, there is still a gap in wafer-scale GaN single-crystal integrated electrodes applied in the energy storage field. Herein, Si-doped GaN nanochannel with gallium oxynitride (GaON) layer on a centimeter scale (denoted by GaN NC) is reported. The Si atoms modulate electronic redistribution to improve conductivity and drive nanochannel formation...
April 21, 2024: Small
https://read.qxmd.com/read/38636482/accelerated-wound-healing-by-electrospun-multifunctional-fibers-with-self-powered-performance
#11
JOURNAL ARTICLE
Jiaqi Zhang, Manting Wang, Hua Yuan, Xiao-Fei Zeng, Jie-Xin Wang, Yuan Le
Wound healing has been a persistent clinical challenge for a long time. Electrical stimulation is an effective therapy with the potential to accelerate wound healing. In this work, the self-powered electrospun nanofiber membranes (triples) were constructed as multifunctional wound dressings with electrical stimulation and biochemical capabilities. Triple was composed of a hydrolyzable inner layer with antiseptic and hemostatic chitosan, a hydrophilic core layer loaded with conductive AgNWs, and a hydrophobic outer layer fabricated by self-powered PVDF...
April 18, 2024: Langmuir: the ACS Journal of Surfaces and Colloids
https://read.qxmd.com/read/38634248/a-compact-sized-fully-self-powered-wireless-flowmeter-based-on-triboelectric-discharge
#12
JOURNAL ARTICLE
Dong Wan, Xin Xia, Haoyu Wang, Shaoshuai He, Jiadan Dong, Jinhong Dai, Dong Guan, Junyu Zheng, Xiya Yang, Yunlong Zi
Flow sensing exhibits significant potential for monitoring, controlling, and optimizing processes in industries, resource management, and environmental protection. However, achieving wireless real-time and omnidirectional sensing of gas/liquid flow on a simple, self-contained device without external power support has remained a formidable challenge. In this study, a compact-sized, fully self-powered wireless sensing flowmeter (CSWF) is introduced with a small size diameter of down to less than 50 mm, which can transmit real-time and omnidirectional wireless signals, as driven by a rotating triboelectric nanogenerator (R-TENG)...
April 18, 2024: Small Methods
https://read.qxmd.com/read/38633486/a-self-powered-photodetector-through-facile-processing-using-polyethyleneimine-carbon-quantum-dots-for-highly-sensitive-uvc-detection
#13
JOURNAL ARTICLE
Vo Pham Hoang Huy, Chung Wung Bark
Ultraviolet C (UVC) photodetectors have garnered considerable attention recently because the detection of UVC is critical for preventing skin damage in humans, monitoring environmental conditions, detecting power aging in facilities, and military applications. As UVC detectors are "solar-blind", they encounter less interference than other environmental signals, resulting in low disturbance levels. This study employed a natural precursor (glucose) and a one-step ultrasonic reaction procedure to prepare carbon quantum dots (CQDs), which served as a convenient and environmentally friendly material to combine with polyethyleneimine (PEI)...
April 16, 2024: RSC Advances
https://read.qxmd.com/read/38632853/gate-voltage-and-bias-voltage-tunable-staggered-gap-to-broken-gap-transition-based-on-wse-2-ta-2-nise-5-heterostructure-for-multimode-optoelectronic-logic-gate
#14
JOURNAL ARTICLE
Tao Zhu, Kai Liu, Yao Zhang, Si Meng, Mengfei He, Yingli Zhang, Minglu Yan, Xiaoxiang Dong, Xiaobo Li, Man Jiang, Hua Xu
Two-dimensional (2D) materials with superior properties exhibit tremendous potential in developing next-generation electronic and optoelectronic devices. Integrating various functions into one device is highly expected as that endows 2D materials great promise for more Moore and more-than-Moore device applications. Here, we construct a WSe2 /Ta2 NiSe5 heterostructure by stacking the p-type WSe2 and the n-type narrow gap Ta2 NiSe5 with the aim to achieve a multifunction optoelectronic device. Owing to the large interface potential barrier, the heterostructure device reveals a prominent diode feature with a large rectify ratio (7...
April 17, 2024: ACS Nano
https://read.qxmd.com/read/38626396/on-demand-mxene-coupled-pyroelectricity-for-advanced-breathing-sensors-and-ir-data-receivers
#15
JOURNAL ARTICLE
Varun Gupta, Zinnia Mallick, Amitava Choudhury, Dipankar Mandal
MXene-inspired two-dimensional (2D) materials like Ti3 C2 T x are widely known for their versatile properties, including surface plasmon, higher electrical conductivity, exceptional in-plane tensile strength, EMI shielding, and IR thermal properties. The MXene nanosheets coupled poly(vinylidene fluoride) (PVDF) nanofibers with d 33 ∼-26 pm V-1 are able to capture the smaller thermal fluctuation due to a superior pyroelectric coefficient of ∼130 nC m-2 K-1 with an improved (∼7 times with respect to neat PVDF nanofibers) pyroelectric current figure of merit (FOMi )...
April 16, 2024: Langmuir: the ACS Journal of Surfaces and Colloids
https://read.qxmd.com/read/38621107/large-optoelectronic-chromatic-dispersion-in-pn-type-silicon-photodiodes-and-photovoltaic-cells
#16
JOURNAL ARTICLE
Sapna Mudgal, Pawan K Dubey, Ziv Glasser, Shmuel Sternklar
Optoelectronic chromatic dispersion (OED) is a significant source of effective chromatic dispersion in photodiodes. We present an experimental and theoretical study of OED in PN-type Si photodiodes and photovoltaic cells and report on a very large effective chromatic dispersion in these devices. As measured with the modulation phase-shift technique at a frequency of 4 kHz for these slow devices, the OED spectral sensitivity for a commercial Si photodiode is approx. 0.02 deg/nm in the 720-850 nm wavelength band and increases to 0...
April 15, 2024: Optics Letters
https://read.qxmd.com/read/38619156/wet-chemical-synthesis-of-ultrathin-%C3%AE-ga-2-o-3-quantum-wires-enabling-far-uvc-photodetection-with-ultrahigh-selectivity-and-sensitivity
#17
JOURNAL ARTICLE
Yuzhuo Sun, Ying Wei, Mengwei Li, Yang Zhang, Xiaohong Li, Louzhen Fan, Yunchao Li
As compared to solar-blind ultraviolet (UV) photodetectors (PDs), far-UVC PDs not only show some irreplaceable advantages but also are more challenging to be developed. To solve this challenge, we report herein a soft template-assisted solvothermal route to synthesize ultrathin γ-Ga2 O3 quantum wires (UQWs) with diameters down to 1-2 nm. These UQWs all exhibit a cluster-like absorption feature with a strong peak located between 190 and 230 nm and an edge below 250 nm, allowing highly selective absorption to far-UVC light...
April 15, 2024: Journal of Physical Chemistry Letters
https://read.qxmd.com/read/38617571/pvdf-zno-piezoelectric-nanofibers-designed-for-monitoring-of-internal-micro-pressure
#18
JOURNAL ARTICLE
Geng Chang, Xuchao Pan, Yu Hao, Wei Du, Siwei Wang, Yu Zhou, Jie Yang, Yong He
Organic piezoelectric materials are emerging as integral components in the development of advanced implantable self-powered sensors for the next generation. Despite their promising applications, a key limitation lies in their reduced mechanical force-to-electricity conversion efficiency. In this study, we present a breakthrough in the fabrication of soft poly(vinylidene fluoride) (PVDF) organic electrospun piezoelectric nanofibers (OEPNs) with exceptional piezoelectric performance achieved through the incorporation of zinc oxide nanorods (ZnO NR)...
April 10, 2024: RSC Advances
https://read.qxmd.com/read/38616087/ultrastable-and-supersensitive-conductive-hydrogels-conferred-by-sodium-alginate-stencil-anchoring-strategy
#19
JOURNAL ARTICLE
Gangrong Wang, Zhuo Chen, Xin Jing, Xijian Yi, Jian Zou, Peiyong Feng, Hailiang Zhang, Yuejun Liu
Although conductive hydrogels have been widely developed currently, their low sensitivity and poor stability severely limited their practical application in flexible wearable devices. Herein, a green "stencil" anchoring strategy was proposed in this study to engineer an ultra-stable and supersensitive hydrogel by virtue of polydopamine decorating sodium alginate molecular chains as "stencil" to anchor polyaniline as conductive component. The dispersion of polyaniline was significantly improved by the sodium alginate "stencil" in the conductive hydrogel...
July 1, 2024: Carbohydrate Polymers
https://read.qxmd.com/read/38612104/a-broadband-photodetector-based-on-non-layered-mns-wse-2-type-i-heterojunctions-with-ultrahigh-photoresponsivity-and-fast-photoresponse
#20
JOURNAL ARTICLE
Chaojie Xie, Yibin Yang, Kunle Li, Xuanhao Cao, Shanshan Chen, Yu Zhao
The separation of photogenerated electron-hole pairs is crucial for the construction of high-performance and wide-band responsive photodetectors. The type-I heterojunction as a photodetector is seldomly studied due to its limited separation of the carriers and narrow optical response. In this work, we demonstrated that the high performance of type-I heterojunction as a broadband photodetector can be obtained by rational design of the band alignment and proper modulation from external electric field. The heterojunction device is fabricated by vertical stacking of non-layered MnS and WSe2 flakes...
March 30, 2024: Materials
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