|
|
|
题名
|
作者
|
年代
|
出处
|
被引量
|
| 1 | Highly Stretchable,Elastic,and Sensitive MXene-Based Hydrogel for Flexible Strain and Pressure Sensors显示文摘Electronic skin is driving the next generation of cutting-edge wearable electronic products due to its good wearability and high accuracy of information acquisition.However,it remains a challenge to fulfill the requirements on detecting full-range human activities with existing flexible strain sensors.Herein,highly stretchable,sensitive,and multifunctional flexible strain sensors based on MXene-(Ti_(3)C_(2)T_(x)-)composited poly(vinyl alcohol)/polyvinyl pyrrolidone double-network hydrogels were prepared.The uniformly distributed hydrophilic MXene nanosheets formed a three-dimensional conductive network throughout the hydrogel,endowing the flexible sensor with high sensitivity.The strong interaction between the double-network hydrogel matrix and MXene greatly improved the mechanical properties of the hydrogels.The resulting nanocomposited hydrogels featured great tensile performance(2400%),toughness,and resilience.Particularly,the as-prepared flexible pressure sensor revealed ultrahigh sensitivity(10.75 kPa^(-1))with a wide response range(0-61.5 kPa),fast response(33.5 ms),and low limit of detection(0.87 Pa).Moreover,the hydrogel-based flexible sensors,with high sensitivity and durability,could be employed to monitor fullrange human motions and assembled into some aligned devices for subtle pressure detection,providing enormous potential in facial expression and phonation recognition,handwriting verification,healthy diagnosis,and wearable electronics. | Yao Lu Xinyu Qu Wen Zhao Yanfang Ren Weili Si Wenjun Wang Qian Wang Wei Huang Xiaochen Dong | 2020 | Research2020,,1: | 14 |
| 2 | Graphene and cobalt phosphide nanowire composite as an anode material for high performance lithium-ion batteries显示文摘合成一经由一个灵巧的热水的方法的磷化物 nanowires 和减少的 graphene 氧化物(表示 CoP/RGO ) 与随后的退火步相结合的钴合成被报导。结果合成介绍大特定的表面区域和提高的电导率,它能有效地便于充电运输并且在 lithiation/de-lithiation 过程期间在体积提供变化。作为结果, CoP/RGO nanocomposite 表明 960 | Jun Yang Yu Zhang Chencheng Sun Hongzheng Liu Laiquan Li Weili Si Wei Huang Qingyu Yan Xiaochen Dong | 2016 | Nano Research2016,9,3: | 8 |
| 3 | Diketopyrrolopyrrole-Au(I) as singlet oxygen generator for enhanced tumor photodynamic and photothermal therapy显示文摘Diketopyrrolopyrrole(DPP)derivatived photosensitizers(PSs)with near infrared(NIR)absorption and good photophysical properties have drawn tremendous attention in cancer phototherapy.However,current DPP derivatives present unsatisfactory quantum yield of singlet oxygen(1O2)due to the large energy gap between the excited singlet and triplet states.To tackle this challenge,herein the DPP core is functionalized with triphenylphosphine-Au(I)group(Th DPP-Au),leading to a high1O2 quantum yield of 0.65.Theoretical calculation attributes the enhancement to spin-orbit coupling and population of the triplet excition upon photoexcitation.The hydrophilic Th DPP-Au nanoparticals(NPs)are prepared via nano-reprecipitation,which displays homogeneous size and excellent light absorption ability(ε=4.382×104 M-1cm-1).And the Th DPP-Au NPs exhibit low dark toxicity and high phototoxicity,which can effectively kill tumor cells via 1O2 induced mitochondrial apoptotic pathway upon irradiation.Furthermore,in vivo experiments demonstrate that Th DPP-Au NPs can selective accumulation in tumor and present excellent synergistic photodynamic/photothermal therapy guided by fluorescence and photothermal dual imaging. | Xiaoyu Huang Rui Gu Jiewei Li Nan Yang Zijin Chen Weili Si Peng Chen Wei Huang Xiaochen Dong | 2020 | Science China Chemistry2020,63,1: | 3 |
| 4 | Robust Sliding Mode Control of Three-phase Voltage Source PWM Rectifier with Uncertainties and Disturbances 显示文摘 | Gangquan Si Weili Zhao Lixin Jia Yanbin Zhang | 2014 | IEEE Chinese Control and Decision Conference2014,26,: | 1 |
| 5 | Small-molecule diketopyrrolopyrrole-based therapeutic nanoparticles for photoacoustic imaging-guided photothermal therapy显示文摘治疗学的 nanoparticles (NP ) 基于 donor-acceptor-donor,结构化的小器官的分子 diketopyrrolopyrrole (SDPP ) 用一条简单降水途径被准备。这些在红外线附近的吸收放射的 NP 有高 photothermal 变换效率并且能有选择地通过提高的渗透和保留效果指向癌症纸巾。得益于这些优点, SDPP NP 能用作一个优秀治疗学的代理人为高度有效并且 noninvasive photoacoustic 指导成像的 photothermal 治疗。用老鼠肿瘤模型的实验证明 SDPP NP 在激光照耀下面展出了非凡的肿瘤脱离能力(660 nm, 1.0 W ? 敳獮瑩癩? 慮潮戭潩椠瑮牥慦散漠 ? 桴獩 ?? 楨牥牡档捩污祬猠牴 ' 壮肭?業牣景畬摩捩搠癥捩 ? 眠楨档猠潨敷 ? 楨桧攠晦捩敩据 ? 景 ?? 挠灡畴敲吗? | Yu Cai Weili Si Qianyun Tang Pingping Liang Chengwu Zhang Peng Chen QiZhang Wei Huang Xiaochen Dong | 2017 | Nano Research2017,10,3: | 1 |
| 6 | Robust Sliding Mode Control of Three-phase Voltage Source PWM Rectifier with Uncertainties and Disturbances 显示文摘 | Gangquan Si Weili Zhao Lixin Jia Yanbin Zhang | 2014 | IEEE Chinese Control and Decision Conference2014,26,: | 1 |
| 7 | Biomineralized CO gas-releasing nanoprodrug for endoplasmic reticulum stress mediated cancer therapy显示文摘The anti-tumor effect of therapeutic carbon monoxide(CO)has been considered concerning the electron transport chain on the inner mitochondrial membrane.Herein,a tumor microenvironment and photo-responsive CO nanoplatform Ca-Flav nanoparticles(NPs)were constructed through biomineralizing acryloyl-modified flavonol,which could release CO both in normoxia and hypoxia conditions upon irradiation at tumor lesion.The in vitro experiments demonstrated that the endoplasmic reticulum stress-related signal pathways could be activated through oxidative stress caused by CO mediated mitochondrial biogenesis and calcium ion turbulence induced by Ca_(3)(PO_(4))_(2)acidolysis,resulting in mitochondrial dysfunction and cell apoptosis.In addition,the Ca-Flav NPs exhibited excellent biocompatibility and tumor inhibition effect in vivo.This work provides new insight into the potential characteristics of CO,paving a new way to engineer more efficient treatment based on CO. | Rui Gu Wanlan Yang Lifei Han Chao Liu Yatao Xu Yunlong Liu Weili Si Wenjun Wang Xiaochen Dong | 2023 | Nano Research2023,16,5: | 0 |
| 8 | Ginsenoside F1 administration promotes UCP1-dependent fat browning and ameliorates obesity-associated insulin resistance显示文摘Obesity-induced type 2 diabetes is mainly due to excessive free fatty acids leading to insulin resistance.Increasing thermogenesis is regarded as an effective strategy for hypolipidemia and hypoglycemia.Ginsenoside is a natural active component in Panax ginseng C.A.Meyer,and some of them enhance thermogenesis.However,there are few studies on the mechanism and target of ginsenosides enhancing thermogenesis.Using thermogenic protein uncoupling protein 1(UCP1)-luciferase reporter assay,we identifi ed ginsenoside F1 as a novel UCP1 activator in the ginsenosides library.Using pull down assay and inhibitor interference,we found F1 binds toβ3-adrenergic receptors(β3-AR)to enhance UCP1 expression via cAMP/PKA/CREB pathway.We also investigated the ability of F1 on energy metabolism in obesity-induced diabetic mice,including body weight,body composition and energy expenditure.The results of proteomics showed that F1 signifi cantly up-regulated thermogenesis proteins and lipolytic proteins,but down-regulated fatty acid synthesis proteins.Ginsenoside F1 increased thermogenesis and ameliorated insulin resistance specifi cally by promoting the browning of white adipose tissue in obese mice.Additionally,ginsenoside F1 improves norepinephrine-induced insulin resistance in adipocytes and hepatocytes,and shows a stronger mitochondria respiration ability than norepinephrine.These fi ndings suggest that ginsenoside F1 is a promising lead compound in the improvement of insulin resistance. | Yuhan Meng Weili Li Chenxing Hu Si Chen Haiyang Li Feifei Bai Lujuan Zheng Ye Yuan Yuying Fan Yifa Zhou | 2023 | Food Science and Human Wellness2023,12,6: | 0 |