keyword
https://read.qxmd.com/read/38701332/controlled-self-assembly-of-nanoscale-superstructures-in-phase-change-ge-sb-te-nanowires
#21
JOURNAL ARTICLE
Gaurav Modi, Andrew C Meng, Srinivasan Rajagopalan, Rangarajan Thiruvengadam, Peter K Davies, Eric A Stach, Ritesh Agarwal
Controlled growth of semiconductor nanowires with atomic precision offers the potential to tune the material properties for integration into scalable functional devices. Despite significant progress in understanding the nanowire growth mechanism, definitive control over atomic positions of its constituents, structure, and morphology via self-assembly remains challenging. Here, we demonstrate an exquisite control over synthesis of cation-ordered nanoscale superstructures in Ge-Sb-Te nanowires with the ability to deterministically vary the nanowire growth direction, crystal facets, and periodicity of cation ordering by tuning the relative precursor flux during synthesis...
May 3, 2024: Nano Letters
https://read.qxmd.com/read/38701230/experimental-study-on-energy-free-superhydrophobic-radiative-cooling-versatile-film-with-enhanced-environmental-tolerance
#22
JOURNAL ARTICLE
Shijin Nie, Lizhan Bai, Guiping Lin, Kang Yuan, Jingwei Fu, Yunfei Zhang, Huanfa Wang, Hongxiang Lan, Peng Liu, Xinyu Tan, Xinyi Li
Clean, energy-free methods of cooling are an effective way to respond to the global energy crisis. To date, cooling materials using passive daytime radiative cooling (RC) technology have been applied in the fields of energy-efficient buildings, solar photovoltaic cooling, and insulating textiles. However, RC materials frequently suffer from comprehensive damage to their microstructure, resulting in the loss of their initial cooling effect in complex outdoor environments. Here, a superhydrophobic daytime passive RC porous film with environmental tolerance (SRCP film) was fabricated, which integrated strong solar reflectivity (approximately 90%), mid-infrared emissivity (approximately 0...
May 3, 2024: ACS Applied Materials & Interfaces
https://read.qxmd.com/read/38701201/highly-efficient-microbial-inactivation-enabled-by-tunneling-charges-injected-through-two-dimensional-electronics
#23
JOURNAL ARTICLE
In-Yong Suh, Zheng-Yang Huo, Jae-Hwan Jung, Donghyeon Kang, Dong-Min Lee, Young-Jun Kim, Bosung Kim, Jinyoung Jeon, Pin Zhao, Jeonghune Shin, SeongMin Kim, Sang-Woo Kim
Airborne pathogens retain prolonged infectious activity once attached to the indoor environment, posing a pervasive threat to public health. Conventional air filters suffer from ineffective inactivation of the physics-separated microorganisms, and the chemical-based antimicrobial materials face challenges of poor stability/efficiency and inefficient viral inactivation. We, therefore, developed a rapid, reliable antimicrobial method against the attached indoor bacteria/viruses using a large-scale tunneling charge-motivated disinfection device fabricated by directly dispersing monolayer graphene on insulators...
May 3, 2024: Science Advances
https://read.qxmd.com/read/38701174/fiber-in-tube-electrifiable-structure-for-virus-filtration-self-generated-static-electricity-by-vibration-sound
#24
JOURNAL ARTICLE
Lianwei Tang, Dong Wang, Shuang Sun, Qikuang Cheng, Lu Zhang, Weibang Xia, Jiaqi Zheng, Jingqiang Cui, Yunming Wang, Huamin Zhou
Fiber has been considered as an ideal material for virus insulation due to the readily available electrostatic adsorption. However, restricted by the electrostatic attenuation and filtration performance decline, their long-lasting applications are unable to satisfy the requirements of medical protective equipment for major medical and health emergencies such as global epidemics, which results in both a waste of resources and environmental pollution. We overcame these issues by constructing a fiber-in-tube structure, achieving the robust reusability of fibrous membranes...
May 3, 2024: ACS Applied Materials & Interfaces
https://read.qxmd.com/read/38700962/a-43-5db-gain-unipolar-a-igzo-tft-amplifier-with-parallel-bootstrap-capacitor-for-bio-signals-sensing-applications
#25
JOURNAL ARTICLE
Mingjian Zhao, Laiqing Li, Rui Liu, Bin Li, Rongsheng Chen, Zhaohui Wu
In this paper, a high gain amplifier with phase compensation loop is presented. A structure of parallel gate cross-coupled transistors to both ends of differential pair drain and source is designed to improves the load impedance, which obtains sufficient gain and further reduces power consumption. A novel capacitor bootstrap load circuit is proposed. The capacitor bootstrap topology is constructed by the drain source resistance of the transistor working in the cut-off region, where the gate source parasitic capacitor of the transistor is in parallel with the bootstrap capacitor rather than the existing series structure, thereby only a small bootstrap capacitor is required...
May 3, 2024: IEEE Transactions on Biomedical Circuits and Systems
https://read.qxmd.com/read/38700957/synthesis-characterization-and-resistive-memory-behaviors-of-highly-strained-cyclometalated-platinum-ii-nanohoops
#26
JOURNAL ARTICLE
Youzhi Xu, Ming-Yi Leung, Liangliang Yan, Ziyong Chen, Panpan Li, Yat-Hin Cheng, Michael Ho-Yeung Chan, Vivian Wing-Wah Yam
Strained carbon nanohoops exhibit attractive photophysical properties due to their unique π-conjugated structure. However, incorporation of such nanohoops into the pincer ligand of metal complexes has rarely been explored. Herein, a new family of highly strained cyclometalated platinum(II) nanohoops has been synthesized and characterized. Strain-promoted C-H bond activation has been observed during the metal coordination process, and Hückel-Möbius topology and random-columnar packing in the solid state are found...
May 3, 2024: Journal of the American Chemical Society
https://read.qxmd.com/read/38700956/fabrication-of-rhenium-disulfide-mesoporous-silica-core-shell-nanoparticles-for-a-ph-responsive-drug-release-and-combined-chemo-photothermal-therapy
#27
JOURNAL ARTICLE
Ha Na, Jake Carrier, Samuel Oyon, Cheng-Yu Lai
A stimuli-responsive drug delivery nanocarrier with a core-shell structure combining photothermal therapy and chemotherapy for killing cancer cells was constructed in this study. The multifunctional nanocarrier ReS2 @mSiO2 -RhB entails an ReS2 hierarchical nanosphere coated with a fluorescent mesoporous silica shell. The three-dimensional hierarchical ReS2 nanostructure is capable of effectively absorbing near-infrared (NIR) light and converting it into heat. These ReS2 nanospheres were generated by a hydrothermal synthesis process leading to the self-assembly of few-layered ReS2 nanosheets...
May 3, 2024: ACS Applied Bio Materials
https://read.qxmd.com/read/38700833/microfluidic-chip-fabrication-for-tumor-cell-3d-culture-based-on-microwell-arrays
#28
JOURNAL ARTICLE
Lanjie Lei
Compared with traditional 2D cell culture, 3D cell culture more closely resembles the original state of cells in vivo and enables the establishment of in vivo-like microenvironments and cell-cell interactions, thereby providing valuable cellular materials for numerous studies. The direct establishment of in vitro patient tumor models can enhance drug testing, cancer research, and individualized precision therapy. In this study, we propose a microfluidic chip based on microwell arrays for 3D tumor cell culture...
May 4, 2024: Methods in Molecular Biology
https://read.qxmd.com/read/38700650/tio-2-electron-transport-layer-with-p-n-homojunctions-for-efficient-and-stable-perovskite-solar-cells
#29
JOURNAL ARTICLE
Wenhao Zhao, Pengfei Guo, Jiahao Wu, Deyou Lin, Ning Jia, Zhiyu Fang, Chong Liu, Qian Ye, Jijun Zou, Yuanyuan Zhou, Hongqiang Wang
Low-temperature processed electron transport layer (ETL) of TiO2 that is widely used in planar perovskite solar cells (PSCs) has inherent low carrier mobility, resulting in insufficient photogenerated electron transport and thus recombination loss at buried interface. Herein, we demonstrate an effective strategy of laser embedding of p-n homojunctions in the TiO2 ETL to accelerate electron transport in PSCs, through localized build-in electric fields that enables boosted electron mobility by two orders of magnitude...
May 3, 2024: Nano-Micro Letters
https://read.qxmd.com/read/38700616/protein-and-polysaccharide-recovery-from-shrimp-wastes-by-natural-deep-eutectic-solvent-mediated-subcritical-water-hydrolysis-for-biodegradable-film
#30
JOURNAL ARTICLE
Md Sadek Ali, Vikash Chandra Roy, Jin-Seok Park, Ahmed Redwan Haque, Jin Hong Mok, Wei Zhang, Byung-Soo Chun
Environmental pollution is a significant problem due to the improper disposal of plastics and shrimp shells outdoors. Therefore, the synthesis of biodegradable film from waste materials is highly important. The novelty of this research lies in the extraction of protein hydrolysates and chitosan from shrimp shells, as well as the fabrication of biodegradable film from these materials. In this study, the composite films were produced using the solution casting method. Moreover, the combined effect of ultrasound pretreatments (UPT) and natural deep eutectic solvents (NADES) was investigated as extraction media, to determine their potential impact on shrimp waste subcritical water hydrolysis (SWH)...
May 3, 2024: Marine Biotechnology
https://read.qxmd.com/read/38700498/a-precursor-derived-ultramicroporous-carbon-for-printing-iontronic-logic-gates-and-super-varactors
#31
JOURNAL ARTICLE
Christin Gellrich, Leonid Shupletsov, Przemyslaw Galek, Ahmed Bahrawy, Julia Grothe, Stefan Kaskel
We present a liquid precursor for 3D printing ultramicroporous carbons (pore width < 0.7 nm) to create a novel in-plane capacitive-analogue of semiconductor-based diodes (CAPodes). This proof-of-concept integrates functional EDLCs into microstructured iontronic devices. The working principle is based on selective ion-sieving, controlling the size of the electrolyte ions and the nanoporous sieving carbon's pore size. By blocking bulky electrolyte ions from entering the sub-nanometer pores, a unidirectional charging characteristic with controllable ion flux is achieved, leading to diodic U-I characteristics with high rectification ratio...
May 3, 2024: Advanced Materials
https://read.qxmd.com/read/38700479/defect-engineered-metal-organic-framework-polyimide-mixed-matrix-membrane-for-co2-separation
#32
JOURNAL ARTICLE
Samaneh Mashhadikhan, Abtin Ebadi, Mohamed Yasir Masoomi, Hamidreza Sanaeepur, Hermenegildo GarcĂ­a
A novel defect-engineered MOF (quasi ZrFum or Q-ZrFum) was synthesized via a controlled thermal deligandation process and incorporated into a CO2-philic 6FDA-durene polyimide (PI) matrix to form Q-ZrFum loaded MMMs. Defect-engineered MOFs and fabricated MMMs were investigated in terms of their characteristic properties and separation performance. The incorporation of defects into the MOF structure increases the pore size and provides unsaturated active metal sites that positively affect CO2 molecule transport...
May 3, 2024: Chemistry: a European Journal
https://read.qxmd.com/read/38700294/tailoring-micellar-nanocarriers-for-pemetrexed-in-breast-cancer-design-fabrication-and-in-vitro-evaluation
#33
JOURNAL ARTICLE
Nalla Usha Kumari, Padakanti Sandeep Chary, Ekta Pardhi, Neelesh Kumar Mehra
Aim: To investigate the pemetrexed encapsulated polymeric mixed micelles (PMMs) against breast cancer treatment.  Methods: We meticulously optimized the formulation and conducted extensive characterizations, including photon correlation spectroscopy for micellization, advanced analytical techniques and in vitro cell line assessments.  Results: The PMM exhibited favorable characteristics, with a spherical morphology, hydrodynamic particle size of 19.58 ± 0.89 nm, polydispersity index of 0...
May 3, 2024: Nanomedicine
https://read.qxmd.com/read/38700274/synthesis-of-nimn-2-o-4-pani-nanosized-composite-with-increased-specific-capacitance-for-energy-storage-applications
#34
JOURNAL ARTICLE
Muhammad Abdullah, Syed Imran Abbas Shah, Karam Jabbour, Peter John, Muhammad Fahad Ehsan, Abdulnasser M Karami, Muhammad Naeem Ashiq, Suleyman I Allakhverdiev
Polyaniline (PANI) stands out as a highly promising conducting polymer with potential for advanced utilization in high-performance pseudocapacitors. Therefore, there exists a pressing need to bolster the structural durability of PANI, achievable by developing composite materials that can enhance its viability for supercapacitor applications. In this particular study, a pioneering approach was undertaken to produce a novel NiMn2 O4 /PANI supercapacitor electrode material. A comprehensive array of analytical techniques was employed to ascertain the structural configuration, morphology, oxidation states of elements, composition, and surface characteristics of the electrode material...
May 3, 2024: Dalton Transactions: An International Journal of Inorganic Chemistry
https://read.qxmd.com/read/38700267/facile-multiple-graded-wrinkle-construction-strategy-for-vastly-boosting-the-sensing-performance-of-ionic-skins
#35
JOURNAL ARTICLE
Hongen Chen, Jianzhuang Shi, Changbin Ji, Wenxin Fan, Kunyan Sui
The construction of surface microstructures (e.g., micropyramids and wrinkles) has been proven as the most effective means to boost the sensitivity of ionic skins (I-skins). However, the single-scale micronano patterns constructed by the common fabrication strategy generally lead to a limited pressure-response range. Here, a convenient repeated stretching/coordinating/releasing strategy is developed to controllably construct multiple graded wrinkles on the polyelectrolyte hydrogel-based I-skins for increasing their sensitivity over a broad pressure range...
May 3, 2024: ACS Applied Materials & Interfaces
https://read.qxmd.com/read/38700262/corrosion-response-of-steels-fabricated-through-arc-directed-energy-deposition-additive-manufacturing-a-review
#36
REVIEW
Khashayar Morshed-Behbahani, Ali Nasiri
Steels exhibit distinct properties that underscore their pivotal role in critical industries, such as maritime, aerospace, automotive, petrochemical, and biomedicine. In recent times, there has been an increasing trend towards manufacturing near- net -shape steel components through various additive manufacturing (AM) modalities, utilizing intricate 3D model data. Initially, powder bed fusion (PBF) technology garnered significant attention for the fabrication of steel components. Nonetheless, arc-directed energy deposition (arc-DED), also known as wire arc additive manufacturing (WAAM) technology, is progressively gaining prominence in the AM enterprise due to its high production rate, the ability to print large-scale components, and notably, reduced capital investment...
May 3, 2024: Materials Horizons
https://read.qxmd.com/read/38700054/fabrication-of-a-wearable-and-foldable-photodetector-based-on-a-wse-2-mxene-2d-2d-heterostructure-using-a-scalable-handprint-technique
#37
JOURNAL ARTICLE
Rahul P Patel, Parth V Shah, Sohel Siraj, Parikshit Sahatiya, Pratik M Pataniya, C K Sumesh
Several studies on semiconductor material-based single-band, high-performance photosensitive, and chemically stable photodetectors are available; however, the lack of broad spectral response, device flexibility, and biodegradability prevents them from being used in wearable and flexible electronics. Apart from that, the selection of the device fabrication technique is a very crucial factor nowadays in terms of equipment utilization and environmental friendliness. This report presents a study demonstrating a straightforward solvent- and equipment-free handprint technique for the fabrication of WSe2 -Ti3 C2 T X flexible, biodegradable, robust, and broadband (Vis-NIR) photodetectors...
May 3, 2024: Nanoscale
https://read.qxmd.com/read/38700007/active-oxygenated-structure-intensified-co2-capture-enables-efficient-electrochemical-ethylene-production-over-carbon-nanofibers
#38
JOURNAL ARTICLE
Tingting Zhang, Jun Wang, Huishan Shang, Bing Zhang, Yanqiang Huang, Jing He, Xu Xiang
The pursuit of high efficacy C-C coupling during the electrochemical CO2 reduction reaction remains a tremendous challenge owing to the high energy barrier of CO2 activation and insufficient coverage of the desired intermediates on catalytic sites. Inspired by the concept of capture-coupled CO2 activation, we fabricated quinone-grafted carbon nanofibers via an in situ oxidative carbonylation strategy. The quinone functionality of carbon nanofibers promotes the capture of CO2 followed by activation. At a current density of 400 mA cm-2, the Faradaic efficiency of ethylene reached 62...
May 3, 2024: Angewandte Chemie
https://read.qxmd.com/read/38700004/effect-of-a-graded-running-race-on-lower-limb-muscle-damage-jump-performance-and-muscle-soreness-in-men-and-women
#39
JOURNAL ARTICLE
Robin Macchi, Yoko Kunimasa, Pascale Chavet, Baptiste Corcelle, Laura Pomportes, Camille Fazzari, Arnaud Hays, Fabrice Vercruyssen, Francesca Rossi, David Bendahan, Caroline Nicol
PURPOSE: Delayed structural and functional recovery after a 20 km graded running race was analyzed with respect to the sex effect. METHODS: Thirteen female and 14 male recreational runners completed the race and three test sessions: one before (PRE) and two after, once on Day 1 or 2 (D1-2) and then on Day 3 or 4 (D3-4). Muscle damage was assessed indirectly using ultrasonography to quantify changes in cross-sectional area (CSA) of 10 lower-limb muscles. Delayed onset of muscle soreness (DOMS) was assessed for three muscle groups...
May 2024: Scandinavian Journal of Medicine & Science in Sports
https://read.qxmd.com/read/38699952/a-stretchable-and-tough-graphene-film-enabled-by-mechanical-bond
#40
JOURNAL ARTICLE
Chunyu Wang, Boyue Gao, Fuyi Fang, Wenhao Qi, Ge Yan, Jun Zhao, Wenbin Wang, Ruixue Bai, Zhaoming Zhang, Zhitao Zhang, Wenming Zhang, Xuzhou Yan
The pursuit of fabricating high-performance graphene films has aroused considerable attention due to their potential for practical applications. However, developing both stretchable and tough graphene films remains a formidable challenge. To address this issue, we herein introduce mechanical bond to comprehensively improve the mechanical properties of graphene films, utilizing [2]rotaxane as the bridging unit. Under external force, the [2]rotaxane cross-link undergoes intramolecular motion, releasing hidden chain and increasing the interlayer slip distance between graphene nanosheets...
May 3, 2024: Angewandte Chemie
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