keyword
https://read.qxmd.com/read/38655900/precise-capture-and-dynamic-release-of-circulating-liver-cancer-cells-with-dual-histidine-based-cell-imprinted-hydrogels
#21
JOURNAL ARTICLE
Wenjing Sun, Xin You, Xinjia Zhao, Xiaoyu Zhang, Chunhui Yang, Fusheng Zhang, Jiaqi Yu, Kaiguang Yang, Jixia Wang, Fangfang Xu, Yongxin Chang, Boxin Qu, Xinmiao Zhao, Yuxuan He, Qi Wang, Jinghua Chen, Guangyan Qing
Circulating tumor cells (CTCs) detection presents significant advantages in diagnosing liver cancer due to its non-invasiveness, real-time monitoring, and dynamic tracking. However, the clinical application of CTCs-based diagnosis is largely limited by the challenges of capturing low-abundance CTCs within a complex blood environment while ensuring them alive. Here we design an ultra-strong ligand, L-histidine-L-histidine (HH), specifically targeting sialylated glycans on the surface of CTCs. Further HH is integrated into a cell-imprinted polymer, constructing a hydrogel with precise CTCs imprinting, high elasticity, satisfactory blood-compatibility, and robust anti-interference capacities...
April 24, 2024: Advanced Materials
https://read.qxmd.com/read/38655847/extrusion-printing-of-surface-functionalized-metal-organic-framework-inks-for-a-high-performance-wearable-volatile-organic-compound-sensor
#22
JOURNAL ARTICLE
Xiao Wang, Hao Qi, Yuzhou Shao, Mingming Zhao, Huayun Chen, Yun Chen, Yibin Ying, Yixian Wang
Wearable sensors hold immense potential for real-time and non-destructive sensing of volatile organic compounds (VOCs), requiring both efficient sensing performance and robust mechanical properties. However, conventional colorimetric sensor arrays, acting as artificial olfactory systems for highly selective VOC profiling, often fail to meet these requirements simultaneously. Here, a high-performance wearable sensor array for VOC visual detection is proposed by extrusion printing of hybrid inks containing surface-functionalized sensing materials...
April 24, 2024: Advanced Science (Weinheim, Baden-Wurttemberg, Germany)
https://read.qxmd.com/read/38655823/accurate-simulation-for-2d-lubricating-materials-in-realistic-environments-from-classical-to-quantum-mechanical-methods
#23
JOURNAL ARTICLE
Yu Hao, Tian-Yu Sun, Jin-Tao Ye, Liang-Feng Huang, Li-Ping Wang
2D materials such as graphene, MoS2 , and hexagonal BN are the most advanced solid lubricating materials with superior friction and anti-wear performance. However, as a typical surface phenomenon, the lubricating properties of 2D materials are largely dependent on the surrounding environment, such as temperature, stress, humidity, oxygen, and other environmental substances. Given the technical challenges in experiment for real-time and in situ detection of microscopic environment-material interaction, recent years have witnessed the acceleration of computational research on the lubrication behavior of 2D materials in realistic environments...
April 24, 2024: Advanced Materials
https://read.qxmd.com/read/38655817/3-dimensional-hydrogel-culture-system-recapitulates-key-tuberculosis-phenotypes-and-demonstrates-pyrazinamide-efficacy
#24
JOURNAL ARTICLE
Vishal K Gupta, Vijaya V Vaishnavi, Mario L Arrieta-Ortiz, Abhirami P S, Jyothsna K M, Sharumathi Jeyasankar, Varun Raghunathan, Nitin S Baliga, Rachit Agarwal
The mortality caused by tuberculosis (TB) infections is a global concern, and there is a need to improve our understanding of the disease. Current in vitro infection models to study the disease have limitations, such as short investigation durations and divergent transcriptional signatures. This study aims to overcome these limitations by developing a 3D collagen culture system that mimics the biomechanical and extracellular matrix (ECM) of lung microenvironment (collagen fibers, stiffness comparable to in vivo conditions), as the infection primarily manifests in the lungs...
April 24, 2024: Advanced Healthcare Materials
https://read.qxmd.com/read/38655816/novel-electrospun-sn-based-composite-cathodes-exhibiting-extended-cycle-life-for-hybrid-magnesium-lithium-batteries
#25
JOURNAL ARTICLE
Qiang Shu, Xiaojiang Hou, Qianhong Cao, Xiaohui Ye, Danting Li, Duode Zhao, Chenlu Wang, Guang Yang, Lishuai Xie, Guoquan Suo
In this study, we present a strategic approach for the structural design and composite modification of one-dimensional Sn-based nanocomposites to enhance the overall electrochemical performance of hybrid magnesium-lithium batteries (MLIBs), which are emerging as promising successors to lithium-ion batteries. By using electrospinning technology, we successfully synthesized NST-SnO2 , NST-SnO2 -NiO, Sn-CNF, and Ni3 Sn2 -CNF composite cathodes, as well as analyzed the synthesis mechanism of the four Sn-based cathodes...
April 24, 2024: ACS Applied Materials & Interfaces
https://read.qxmd.com/read/38655776/nonlinear-elastic-bottlebrush-polymer-hydrogels-modulate-actomyosin-mediated-protrusion-formation-in-mesenchymal-stromal-cells
#26
JOURNAL ARTICLE
Monica L Ohnsorg, Kayla M Mash, Alex Khang, Varsha V Rao, Bruce E Kirkpatrick, Kaustav Bera, Kristi S Anseth
The nonlinear elasticity of many tissue-specific extracellular matrices is difficult to recapitulate without the use of fibrous architectures, which couple strain-stiffening with stress relaxation. Herein, bottlebrush polymers are synthesized and crosslinked to form poly(ethylene glycol)-based hydrogels and used to study how strain-stiffening behavior affects human mesenchymal stromal cells (hMSCs). By tailoring the bottlebrush polymer length, the critical stress associated with the onset of network stiffening is systematically varied, and a unique protrusion-rich hMSC morphology emerges only at critical stresses within a biologically accessible stress regime...
April 24, 2024: Advanced Materials
https://read.qxmd.com/read/38655767/construction-of-co-se-w-at-interfaces-of-phase-mixed-cobalt-selenide-via-spontaneous-phase-transition-for-platinum-like-hydrogen-evolution-activity-and-long-term-durability-in-alkaline-and-acidic-media
#27
JOURNAL ARTICLE
Jingtong Zhang, Chuanqi Cheng, Liyang Xiao, Chunyan Han, Xueru Zhao, Pengfei Yin, Cunku Dong, Hui Liu, Xiwen Du, Jing Yang
Cost-effective transition metal chalcogenides (TMCs) are highly promising electrocatalysts for both alkaline and acidic hydrogen evolution reactions (HER). However, unsatisfactory HER kinetics and stability have severely hindered their applications in industrial water electrolysis. Herein, a nanoflowers-shaped W-doped cubic/orthorhombic phase-mixed CoSe2 catalyst ((c/o)-CoSe2 -W) is reported. The W doping induces spontaneous phase transition from stable phase cubic CoSe2 to metastable phase orthorhombic CoSe2 , which not only enables precise regulation of the ratio of two phases, but also realizes W doping at the interfaces of two phases...
April 24, 2024: Advanced Materials
https://read.qxmd.com/read/38655760/thermal-welding-of-liquids
#28
JOURNAL ARTICLE
Yunhui Wen, Kaijuan Li, Jiaqiu Luo, Weixiao Feng, Shaowei Shi
Welding of thermoplastics is common practice in many industrial sectors, but it has yet to be realized with fluids. Here, we report the thermal welding of liquids by using the assembly and jamming of nanoparticles surfactants (NPSs) at liquid-liquid interfaces. By fine-tuning the dynamic interaction strength within NPSs, the interfacial activity of NPSs, as well as the binding energy of NPSs to the interface can be precisely controlled, leading to a dynamic exchange of NPSs, maximizing the reduction in the interfacial energy...
April 24, 2024: Advanced Materials
https://read.qxmd.com/read/38655735/the-pseudosuchian-record-in-paleohistology-a-small-review
#29
JOURNAL ARTICLE
Torsten M Scheyer
Archosauria originated around the Earth's largest biotic crisis that severely affected all ecosystems globally, the Permotriassic Mass extinction event, and comprises two crown-group lineages: the bird-lineage and the crocodylian lineage. The bird lineage includes the iconic pterosaurs, as well as dinosaurs and birds, whereas the crocodylian lineage includes clades such as aetosaurs, poposaurs, "rauisuchians," as well as Crocodylomorpha; the latter being represented today only by less than 30 extant species of Crocodylia...
April 24, 2024: Anatomical Record: Advances in Integrative Anatomy and Evolutionary Biology
https://read.qxmd.com/read/38655719/intrahippocampal-supramolecular-assemblies-directed-bioorthogonal-liberation-of-neurotransmitters-to-suppress-seizures-in-freely-moving-mice
#30
JOURNAL ARTICLE
Chengling Wu, Jingyu Xie, Qingxin Yao, Yilin Song, Gucheng Yang, Jie Zhao, Ruijia Zhang, Ting Wang, Xingyu Jiang, Xinxia Cai, Yuan Gao
The precise delivery of anti-seizure medications (ASM) to epileptic loci remains the major challenge to treat epilepsy without causing adverse drug reactions. The unprovoked nature of epileptic seizures raises the additional need to release ASMs in a spatiotemporal controlled manner. Targeting the oxidative stress in epileptic lesions, here we developed the reactive oxygen species induced in situ supramolecular assemblies which synergized bioorthogonal reactions to deliver inhibitory neurotransmitter (GABA) on-demand...
April 24, 2024: Advanced Materials
https://read.qxmd.com/read/38655703/recent-advances-in-fluorescence-and-afterglow-of-cds-in-matrices
#31
REVIEW
Qiang Fu, Kangzhi Lu, Shouhong Sun, Zhanhua Dong
Carbon dots (CDs) are novel nanomaterials with dimensions less than 10 nm that have attracted much attention due to their outstanding optical properties. However, the development of solid-state fluorescence and afterglow methods has been relatively slow, although the properties of these materials under liquid conditions have been extensively studied. In recent years, embedding CDs in a matrix has been shown to prevent aggregation quenching and inhibit nonradiative transitions, thus realizing solid-state fluorescence and afterglow, which has greatly broadened the research and application areas of CDs...
April 24, 2024: Nanoscale Horizons: the Home for Rapid Reports of Exceptional Significance in Nanoscience and Nanotechnolgy
https://read.qxmd.com/read/38655684/advancing-lithium-sulfur-battery-efficiency-utilizing-a-2d-2d-g-c-3-n-4-mxene-heterostructure-to-enhance-sulfur-evolution-reactions-and-regulate-polysulfides-under-lean-electrolyte-conditions
#32
JOURNAL ARTICLE
Vijay K Tomer, Otavio Augusto Titton Dias, Abdelaziz M Gouda, Ritu Malik, Mohini Sain
Lithium-sulfur batteries (LSBs) show promise for achieving a high energy density of 500 W h kg-1 , despite challenges such as poor cycle life and low energy efficiency due to sluggish redox kinetics of lithium polysulfides (LiPSs) and sulfur's electronic insulating nature. We present a novel 2D Ti3 C2 Mxene on a 2D graphitic carbon nitride (g-C3 N4 ) heterostructure designed to enhance LiPS conversion kinetics and adsorption capacity. In a pouch cell configuration with lean electrolyte conditions (∼5 μL mg-1 ), the g-C3 N4 -Mx/S cathode exhibited excellent rate performance, delivering ∼1061 mA h g-1 at C/8 and retaining ∼773 mA h g-1 after 190 cycles with a Coulombic efficiency (CE) of 92...
April 24, 2024: Materials Horizons
https://read.qxmd.com/read/38655672/comparative-clinical-evaluation-between-self-adhesive-and-conventional-bulk-fill-composites-in-class-ii-cavities-a-1-year-randomized-controlled-clinical-study
#33
JOURNAL ARTICLE
Mohamed S Ellithy, Mohamed H Abdelrahman, Rania R Afifi
OBJECTIVE: This randomized controlled clinical trial compared the clinical efficacy of self-adhesive bulk-fill Surefil One with a traditional bulk-fill composite in class II restorations. MATERIALS AND METHODS: Sixty-four direct class II composite restorations were categorized into two groups. Group I, control group (n = 32): cavities were restored by Filtek One bulk-fill composite with Scotchbond Universal (SBU) adhesive in self-etch mode, Group II, test group (n = 32): cavities were restored by Surefil One self-adhesive bulk-fill composite...
April 24, 2024: Journal of Esthetic and Restorative Dentistry
https://read.qxmd.com/read/38655667/metalation-of-metal-organic-frameworks-fundamentals-and-applications
#34
REVIEW
Hai-Yu Li, Xiang-Jing Kong, Song-De Han, Jiandong Pang, Tao He, Guo-Ming Wang, Xian-He Bu
Metalation of metal-organic frameworks (MOFs) has been developed as a prominent strategy for materials functionalization for pore chemistry modulation and property optimization. By introducing exotic metal ions/complexes/nanoparticles onto/into the parent framework, many metallized MOFs have exhibited significantly improved performance in a wide range of applications. In this review, we focus on the research progress in the metalation of metal-organic frameworks during the last five years, spanning the design principles, synthetic strategies, and potential applications...
April 24, 2024: Chemical Society Reviews
https://read.qxmd.com/read/38655635/clean-transfer-of-two-dimensional-materials-a-comprehensive-review
#35
REVIEW
Haijun Liu, Jiong Zhao, Thuc Hue Ly
The growth of two-dimensional (2D) materials through chemical vapor deposition (CVD) has sparked a growing interest among both the industrial and academic communities. The interest stems from several key advantages associated with CVD, including high yield, high quality, and high tunability. In order to harness the application potentials of 2D materials, it is often necessary to transfer them from their growth substrates to their desired target substrates. However, conventional transfer methods introduce contamination that can adversely affect the quality and properties of the transferred 2D materials, thus limiting their overall application performance...
April 24, 2024: ACS Nano
https://read.qxmd.com/read/38655488/high-performance-electrochemical-co-2-reduction-over-pd-decorated-cobalt-containing-nitrogen-doped-carbon
#36
JOURNAL ARTICLE
Shayan Gul, Fatima Nasim, Waheed Iqbal, Amir Waseem, Muhammad Arif Nadeem
Efficient electrocatalytic CO2 reduction reaction (eCO2 RR) to various products, such as carbon monoxide (CO), is crucial for mitigating greenhouse gas emissions and enabling renewable energy storage. In this article, we introduce Pd nanoparticles which are deposited over in-house synthesized nitrogen doped tubular carbon (NC) whose ends are blocked with cobalt oxide (CoOx). This composite material is denoted as Pd@CoOx/NC. Among the series of synthesized electrocatalysts, the optimum ratio (Pd@CoOx/NC1) within this category exhibits exceptional performance, manifesting an 81% faradaic efficiency (FE) for CO generation which was quantitatively measured using a gas chromatograph...
April 22, 2024: RSC Advances
https://read.qxmd.com/read/38655485/smart-materials-for-flexible-electronics-and-devices-hydrogel
#37
REVIEW
Taposhree Dutta, Pavan Chaturvedi, Ignacio Llamas-Garro, Jesús Salvador Velázquez-González, Rakesh Dubey, Satyendra Kumar Mishra
In recent years, flexible conductive materials have attracted considerable attention for their potential use in flexible energy storage devices, touch panels, sensors, memristors, and other applications. The outstanding flexibility, electricity, and tunable mechanical properties of hydrogels make them ideal conductive materials for flexible electronic devices. Various synthetic strategies have been developed to produce conductive and environmentally friendly hydrogels for high-performance flexible electronics...
April 22, 2024: RSC Advances
https://read.qxmd.com/read/38655476/a-surface-independent-bioglue-using-photo-crosslinkable-benzophenone-moiety
#38
JOURNAL ARTICLE
Yue Shi, Xuelian Tao, Ping Du, Paul Pasic, Lars Esser, Hsien-Yeh Chen, Helmut Thissen, Peng-Yuan Wang
Surface coating technology is broadly demanded across various fields, including marine and biomedical materials; therefore, a facile and versatile approach is desired. This study proposed an attractive surface coating strategy using photo-crosslinkable benzophenone (BP) moiety for biomaterials application. BP-containing "bioglue" polymer can effectively crosslink with all kinds of surfaces and biomolecules. Upon exposure to ultraviolet (UV) light, free radical reaction from the BP glue facilitates the immobilization of diverse molecules onto different substrates in a straightforward and user-friendly manner...
April 22, 2024: RSC Advances
https://read.qxmd.com/read/38655470/bishydrazone-ligand-and-its-zn-complex-synthesis-characterization-and-estimation-of-scalability-inhibition-mitigation-effectiveness-for-api-5l-x70-carbon-steel-in-3-5-nacl-solutions
#39
JOURNAL ARTICLE
Ola A El-Gammal, Dina A Saad, Marwa N El-Nahass, Kamal Shalabi, Yasser M Abdallah
Bishydrazone ligand, 2,2'-thiobis( N '-(( E )-thiophen-2-ylmethylene) acetohydrazide), H2 TTAH and its Zn- complex were prepared and characterized through elemental analysis and various spectroscopic performances as well as (IR, 1 H and 13 C NMR, mass and (UV-Vis) measurements. The synthesized complex exhibited the molecular formula [Zn2 (H2 TTAH)(OH)4 (C5 H5 N)3 C2 H5 OH] (Zn-H2 TTAH). To assess their potential as anti-corrosion materials, the synthesized particles were assessed for their effectiveness for API 5L X70 C-steel corrosion in a 3...
April 22, 2024: RSC Advances
https://read.qxmd.com/read/38655465/pr-2-ni-0-8-co-0-2-o-4-%C3%AE-impregnated-la-0-6-sr-0-4-coo-3-%C3%AE-oxygen-electrode-for-efficient-co-2-electroreduction-in-solid-oxide-electrolysis-cells
#40
JOURNAL ARTICLE
Binbin Liu, Zeming Li, Guoping Xiao, Xian-Long Du, Huichao Yao, Ruoyun Dai, Xiulin Wang, Jian-Qiang Wang, Tao Li
The solid oxide electrolysis cell (SOEC) is an advanced electrochemical device with a promising future in reducing CO2 emissions. Currently, the insufficient oxygen evolution reaction activity in conventional anode materials severely restricts the development of electrolytic CO2 . Herein, the PNCO-LSC composite oxygen electrode was exploited by impregnating Pr2 Ni0.8 Co0.2 O4+ δ (PNCO) on the surface of La0.6 Sr0.4 CoO3- δ (LSC) oxygen electrode. The results of electrochemical tests and various physicochemical characterizations indicate that the infiltration of PNCO can lead to a significant improvement in the performance of the cell for CO2 electroreduction by increasing the surface oxygen exchange...
April 22, 2024: RSC Advances
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