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"Li, Benxiao"
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Compound Effects of Sodium Chloride and Gypsum on the Compressive Strength and Sulfate Resistance of Slag-Based Geopolymer Concrete
2023
Based on compressive strength, sulfate resistance, mass change, and relative dynamic elastic modulus tests, and XRD and SEM analysis, the effects of sodium chloride (NaCl) and gypsum on the mechanical properties and resistance to sulfate attack of slag-based geopolymer concrete activated by quicklime as well as the mechanism of action were studied. The results indicate that: (1) with appropriate dosages of NaCl or gypsum, the compressive strength of geopolymer concrete can be increased by 55.8% or 245.3% at 3 days and 23.9% or 82.3% at 28 days, respectively. When NaCl and gypsum are combined, Friedel’s salt, Kuzel’s salt, and NaOH are generated, and the strength is increased by 90.8% at 3 days, and 180.3% at 28 days. (2) With 2% NaCl alone, the mass loss is reduced from 5.29% to 2.44%, and the relative dynamic elastic modulus is increased from 0.37 to 0.41. When compounded with 7.5% gypsum, the mass is increased by 0.26%, and the relative dynamic elastic modulus is increased to 1.04. With a further increase of NaCl to 4%, the mass is increased by 0.27%, and the relative dynamic elastic modulus is increased to 1.09. The sulfate corrosion resistance coefficient of geopolymer concrete is increased from 0.64 to 1.02 when it is immersed with 7.5% gypsum alone for 90 days, and it can be further increased to 1.11 when compounded with 4% NaCl. (3) The geopolymer prepared with sodium chloride: gypsum: quicklime: slag = 4:7.5:13.5:75 can be used to replace 32.5 slag Portland cement in plain concrete. The cost and carbon emissions are reduced by 25% and 48%, respectively, and the sulfate corrosion resistance coefficient is higher by 38.8% than with slag Portland cement.
Journal Article
Associated Effects of Sodium Chloride and Dihydrate Gypsum on the Mechanical Performance and Hydration Properties of Slag-Based Geopolymer
2023
The associated effect of sodium chloride and dihydrate gypsum on the mechanical performance of a slag-based geopolymer activated by quicklime was investigated by compressive strength, shrinkage, and square circle anti-cracking tests of mortar with a 0.5 water–binder ratio and a 1:3 binder–sand ratio, as well as paste soundness, powder X-ray diffraction (XRD), thermogravimetric analysis (TGA), scanning electron microscopy with energy dispersive spectroscopy (SEM-EDS), and mercury intrusion porosimetry (MIP) of the paste. The results indicate that (1) when dihydrate gypsum is used alone, it combines with calcium aluminate hydrate (C-A-H) to form calcium sulfoaluminate hydrate (AFt), which encourages the hydration process of slag. A 7.5% addition can result in an increase of 97.33% and 36.92% in 3-day and 28-day compressive strengths, respectively. When NaCl is used by itself, it facilitates the condensation of the aluminum silicate tetrahedron unit and generates zeolite. A 2% dosage can lead to a 66.67% increase in the 3-day compressive strength, while causing a 15.89% reduction in the 28-day compressive strength. (2) The combined effect of 2% NaCl and 7.5% gypsum results in the formation of needle-like and rod-shaped AFt, Friedel’s salt, and plate-like Kuzel’s salt in the geopolymer. This leads to an increase in 3-day and 28-day compressive strengths by 148% and 37.85%, respectively. Furthermore, it reduces the porosity by 18.7%. (3) Both NaCl and gypsum enhance the paste soundness of the slag-based geopolymer, and they do no harm to the crack resistance of the geopolymer. The drying shrinkage of the geopolymer at 28 days is just 0.48 × 10−3, which is only 66.7% of OPC. This slag-based geopolymer has a simple preparation process, good volume stability, low raw material cost, low energy consumption, and low carbon emissions. It can be used instead of 32.5 slag Portland cement in plain concrete applications, and has high engineering, economic, and environmental values.
Journal Article
Research Progress of Vertical Channel Thin Film Transistor Device
by
Wen, Pan
,
Chen, Longlong
,
Li, Xifeng
in
application in sensing
,
Circuit components
,
Dielectric films
2023
Thin film transistors (TFTs) as the core devices for displays, are widely used in various fields including ultra-high-resolution displays, flexible displays, wearable electronic skins and memory devices, especially in terms of sensors. TFTs have now started to move towards miniaturization. Similarly to MOSFETs problem, traditional planar structure TFTs have difficulty in reducing the channel’s length sub-1μm under the existing photolithography technology. Vertical channel thin film transistors (V-TFTs) are proposed. It is an effective solution to overcome the miniaturization limit of traditional planar TFTs. So, we summarize the different aspects of VTFTs. Firstly, this paper introduces the structure types, key parameters, and the impact of different preparation methods in devices of V-TFTs. Secondly, an overview of the research progress of V-TFTs’ active layer materials in recent years, the characteristics of V-TFTs and their application in examples has proved the enormous application potential of V-TFT in sensing. Finally, in addition to the advantages of V-TFTs, the current technical challenge and their potential solutions are put forward, and the future development trend of this new structure of V-TFTs is proposed.
Journal Article
IRIS, a randomised, double-blind, placebo-controlled trial of interleukin-6 receptor inhibition undergoing endovascular treatment in acute anterior circulation ischaemic stroke: study rationale and design
by
Wu, Chuanjie
,
Ji, Xunming
,
Zhou, Chen
in
Aged
,
Antibodies, Monoclonal, Humanized - adverse effects
,
Antibodies, Monoclonal, Humanized - therapeutic use
2025
RationaleNeuroprotective strategies based on reperfusion therapy hold substantial promise for acute ischaemic stroke (AIS). Preclinical research indicates that tocilizumab, an interleukin-6 receptor antagonist, can attenuate ischaemia-reperfusion damage by exerting anti-inflammatory and neuroprotective effects.AimTo determine tocilizumab’s efficacy and safety when combined with endovascular thrombectomy (EVT) in patients with acute anterior circulation large vessel occlusion (LVO).Sample size estimatesTo determine a 30% decrease in average infarct core volume comparing the intervention and historical control groups (mean increase of 18.7 mL (SD=9.7 mL) post-thrombectomy) via a two-sided test (alpha=0.05, power=80%), accounting for a 10% drop-out rate, we plan to recruit 108 participants.Methods and designThis trial is designed as a randomised, multicentre, double-blind, placebo-controlled trial. Patients will be randomly and evenly allocated to the tocilizumab or placebo groups.Study outcomesThe primary endpoint is the change in infarct core volume between baseline and 72 hours post-treatment. Secondary outcomes include the 90-day modified Rankin scale score (0–2, indicating functional independence). The key safety endpoints include 90-day mortality and symptomatic intracerebral haemorrhage within 72 hours after EVT.DiscussionAdministering tocilizumab within 24 hours of stroke as an adjunct to EVT may effectively reduce the infarct core volume for patients experiencing AIS with anterior circulation LVO, potentially improving functional outcomes in these patients.
Journal Article
Intra-arterial tenecteplase after successful endovascular recanalisation in patients with acute posterior circulation arterial occlusion (ATTENTION-IA): multicentre randomised controlled trial
by
Wang, Li
,
Li, Yuwen
,
Cui, Tao
in
Aged
,
Arterial Occlusive Diseases - drug therapy
,
Cardiovascular system
2025
AbstractObjectiveTo assess whether intra-arterial tenecteplase administered after successful endovascular recanalisation improves outcomes in patients with acute arterial occlusion of the posterior circulation.DesignMulticentre randomised controlled trial.Setting31 hospitals in China, 24 January 2023 to 24 August 2023.Participants208 patients with successful recanalisation (grade 2b50-3 on the extended thrombolysis in cerebral infarction scale) of an occlusion in the V4 segment of the vertebral artery; proximal, middle, or distal segment of the basilar artery; or P1 segment of the posterior cerebral artery: 104 were randomly allocated to receive tenecteplase and 104 to receive standard care.InterventionsIntra-arterial tenecteplase (0.0625 mg/kg, maximum dose 6.25 mg) administered proximal to the residual thrombus (if still present) or distal to the origin of the main pontine perforator branches over 15 seconds, or endovascular treatment only (control group).Main outcome measuresThe primary outcome was freedom from disability (modified Rankin scale score 0 or 1) at 90 days after randomisation. Primary safety outcomes included symptomatic intracranial haemorrhage within 36 hours and all cause mortality at 90 days. All efficacy and safety analyses were conducted by intention to treat and adjusted for age, pre-stroke modified Rankin scale score, time from onset of moderate to severe stroke (National Institutes of Health stroke scale score ≥6) to randomisation, hypertension, and baseline stroke severity.ResultsAt 90 days, 36 patients (34.6%) in the tenecteplase group and 27 (26.0%) in the control group had a modified Rankin scale score of 0 or 1 (adjusted risk ratio 1.36, 95% confidence interval 0.92 to 2.02; P=0.12). Mortality at 90 days was similar between the tenecteplase and control groups: 29 (27.9%) v 28 (26.9%), adjusted risk ratio 1.13, 0.73 to 1.74. Symptomatic intracranial haemorrhage within 36 hours occurred in eight patients (8.3%) in the tenecteplase group and three (3.1%) in the control group (adjusted risk ratio 3.09, 0.78 to 12.20).ConclusionsIn patients with acute ischaemic stroke due to acute posterior large or proximal vessel occlusion, intra-arterial tenecteplase administered after successful recanalisation was not associated with a statistically significant reduction in combined disability and mortality at 90 days.Trial registrationClinicalTrials.gov NCT05684172.
Journal Article
Electrolyte‐Gated Transistor Array (20 × 20) with Low‐Programming Interference Based on Coplanar Gate Structure for Unsupervised Learning
by
Li, Jun
,
Zhang, Wenkui
,
Chen, Lianghao
in
arrays
,
electrolyte‐gated transistors
,
low energy consumption
2024
Compute‐in‐memory (CIM) is a pioneering approach using parallel data processing to eliminate traditional data transmission bottlenecks for faster, energy‐efficient data handling. Crossbar arrays with two‐terminal devices such as memristors and phase‐change memory are commonly employed in CIM, but they encounter challenges such as leakage current and increased power usage. Three‐terminal transistor arrays have potential solutions, yet large‐scale electrolyte‐gated transistors (EGTs) demonstrations are uncommon due to compatibility issues with existing photolithography processes. Herein, a 20 × 20 EGTs array is designed using indium‐gallium‐zinc‐oxide as the semiconductor channel and polyacrylonitrile (PAN) doped with C2F6LiNO4S2 as the electrolyte. Each transistor unit in the array can serve as a synapse, exhibiting a large conductance range, low energy consumption (6.984 fJ) for read–write operations, excellent repeatability, and quasilinear update characteristics. It has been confirmed that the EGTs array not only enables precise device programming but also virtually eliminates signal interference between neighboring devices during the programming process. Using 54 transistors in the EGTs array, unsupervised learning with a winner‐takes‐all neural network is successfully demonstrated. After 50 training iterations, the neural network achieves perfect 100% accuracy in classifying test‐set letters. The work demonstrates the potential of EGTs for constructing large‐scale integration synaptic array toward efficient computing architectures. Crafted with photolithography, a 20 × 20 electrolyte transistor array excels in synapse performance, with low energy consumption at 6.984 fJ and good uniformity. The designed array enables precise programming of target devices while minimizing interference among adjacent devices to almost zero. With 54 transistors, successful unsupervised learning demonstrations achieve 100% classification accuracy.
Journal Article