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| 1 | Controllable Synthesis of Fluorescent Carbon Dots and Their Detection Application as Nanoprobes显示文摘Carbon dots(CDs), as a new member of carbon nanomaterial family, have aroused great interest since their discovery in 2004. Because of their outstanding water solubility, high sensitivity and selectivity to target analytes, low toxicity, favorable biocompatibility, and excellent photostability, researchers from diverse disciplines have come together to further develop the fundamental properties of CDs. Many methods for the production of CDs have been reported, therein, hydrothermal and solvothermal technology needs simple equipments, and microwave synthesis needs less reaction time, hence these methods become current common synthesis methods, in which many precursors have been applied to produce CDs. Due to their excellent fluorescence, CDs have made impressive strides in sensitivity and selectivity to a diverse array of salt ions,organic/biological molecules and target gases. The development of CDs as nanoprobes is still in its infancy, but continued progress may lead to their integration into environmental and biological applications. Hydrothermal,solvothermal, and microwave synthesis of fluorescent carbon dots and their detection applications as nanoprobes in salt ions, organic/biological molecules, and target gases will be reviewed. | Zhi Yang Zhaohui Li Minghan Xu Yujie Ma Jing Zhang Yanjie Su Feng Gao Hao Wei Liying Zhang | 2013 | Nano-Micro Letters2013,5,4: | 12 |
| 2 | High safety separators for rechargeable lithium batteries显示文摘Lithium-ion batteries(LIBs)are presently dominant mobile power sources due to their high energy density,long lifespan,and low self-discharging rates.The safety of LIBs has been concerned all the time and become the main problem restricting the development of high energy density LIBs.As a significant part of LIBs,the properties of separators have a significant effect on the capacity and performances of batteries and play an important role in the safety of LIBs.In recent years,researchers devoted themselves to the development of various multi-functional safe separators from different views of methods,materials,and practical requirements.In this review,we mainly focus on the recent progress in the development of high-safety separators with high thermal stability,good lithium dendritic resistance,high mechanical strength and novel multifunction for high-safety LIBs and have in-depth discussions regarding the separator's significant contribution to enhance the safety and performances of the batteries.Furthermore,the future directions and challenges of separators for the next-generation high-safety and high energy density rechargeable lithium batteries are also provided. | Miaomiao Su Guang Huang Suqing Wang Yanjie Wang Haihui Wang | 2021 | Science China Chemistry2021,64,7: | 6 |
| 3 | Highly Enhanced Visible-Light-Driven Photoelectrochemical Performance of ZnO-Modified In_2S_3 Nanosheet Arrays by Atomic Layer Deposition显示文摘Photoanodes based on In_2S_3/ZnO heterojunction nanosheet arrays(NSAs) have been fabricated by atomic layer deposition of ZnO over In_2S_3 NSAs, which were in situ grown on fluorine-doped tin oxide glasses via a facile solvothermal process. The as-prepared photoanodes show dramatically enhanced performance for photoelectrochemical(PEC) water splitting, compared to single semiconductor counterparts. The optical and PEC properties of In_2S_3/ZnO NSAs have been optimized by modulating the thickness of the Zn O overlayer. After pairing with ZnO, the NSAs exhibit a broadened absorption range and an increased light absorptance over a wide wavelength region of 250–850 nm. The optimized sample of In_2S_3/ZnO-50 NSAs shows a photocurrent density of 1.642 m A cm^(-2)(1.5 V vs. RHE) and an incident photonto-current efficiency of 27.64% at 380 nm(1.23 V vs.RHE), which are 70 and 116 times higher than those of the pristine In_2S_3 NSAs, respectively. A detailed energy band edge analysis reveals the type-II band alignment of the In_2S_3/ZnO heterojunction, which enables efficient separation and collection of photogenerated carriers,especially with the assistance of positive bias potential, and then results in the significantly increased PEC activity. | Ming Li Xinglong Tu Yunhui Wang Yanjie Su Jing Hu Baofang Cai Jing Lu Zhi Yang Yafei Zhang | 2018 | Nano-Micro Letters2018,10,3: | 5 |
| 4 | A Novel Artificial Neuron-Like Gas Sensor Constructed from CuS Quantum Dots/Bi2S3 Nanosheets显示文摘Real-time rapid detection of toxic gases at room temperature is particularly important for public health and environmental monitoring.Gas sensors based on conventional bulk materials often suffer from their poor surface-sensitive sites,leading to a very low gas adsorption ability.Moreover,the charge transportation efficiency is usually inhibited by the low defect density of surface-sensitive area than that in the interior.In this work,a gas sensing structure model based on CuS quantum dots/Bi_(2)S_(3) nanosheets(CuS QDs/Bi_(2)S_(3) NSs)inspired by artificial neuron network is constructed.Simulation analysis by density functional calculation revealed that CuS QDs and Bi_(2)S_(3) NSs can be used as the main adsorption sites and charge transport pathways,respectively.Thus,the high-sensitivity sensing of NO_(2) can be realized by designing the artificial neuron-like sensor.The experimental results showed that the CuS QDs with a size of about 8 nm are highly adsorbable,which can enhance the NO_(2) sensitivity due to the rich sensitive sites and quantum size effect.The Bi_(2)S_(3) NSs can be used as a charge transfer network channel to achieve efficient charge collection and transmission.The neuron-like sensor that simulates biological smell shows a significantly enhanced response value(3.4),excellent responsiveness(18 s)and recovery rate(338 s),low theoretical detection limit of 78 ppb,and excellent selectivity for NO_(2).Furthermore,the developed wearable device can also realize the visual detection of NO2 through real-time signal changes. | Xinwei Chen Tao Wang Jia Shi Wen Lv Yutong Han Min Zeng Jianhua Yang Nantao Hu Yanjie Su Hao Wei Zhihua Zhou Zhi Yang Yafei Zhang | 2022 | Nano-Micro Letters2022,14,1: | 3 |
| 5 | Rice GLUTATHIONE PEROXIDASE1-mediated oxidation of bZIP68 positively regulates ABA-independent osmotic stress signaling显示文摘Osmotic stress caused by drought and high salinity is a significant environmental threat that limits plant growth and agricultural yield. Redox regulation plays an important role in plant stress responses, but the mechanisms by which plants perceive and transduce redox signals are still underexplored. Here, we report a critical function for the thiol peroxidase GPX1 in osmotic stress response in rice, where it serves as a redox sensor and transducer. GPX1 is quickly oxidized upon exposure to osmotic stress and forms an intramolecular disulfide bond, which is required for the activation of bZIP68, a VRE-like basic leucine zipper (bZIP) transcription factor involved in the ABA-independent osmotic stress response pathway. The disulfide exchange between GPX1 and bZIP68 induces homo-tetramerization of bZIP68 and thus positively regulates osmotic stress response by regulating osmotic-responsive gene expression. Furthermore, we discovered that the nuclear translocation of GPX1 is regulated by its acetylation under osmotic stress. Taken together, our findings not only uncover the redox regulation of the GPX1-bZIP68 module during osmotic stress but also highlight the coordination of protein acetylation and redox signaling in plant osmotic stress responses. | Heng Zhou Feng Zhang Fengchao Zhai Ye Su Ying Zhou Zhenglin Ge Priyadarshini Tilak Jürgen Eirich Iris Finkemeier Ling Fu Zongmin Li Jing Yang Wenbiao Shen Xingxing Yuan Yanjie Xie | 2022 | Molecular Plant2022,15,4: | 2 |
| 6 | Outstanding Humidity Chemiresistors Based on Imine-Linked Covalent Organic Framework Films for Human Respiration Monitoring显示文摘Human metabolite moisture detection is important in health monitoring and non-invasive diagnosis.However,ultra-sensitive quantitative extraction of respiration information in real-time remains a great challenge.Herein,chemiresistors based on imine-linked covalent organic framework(COF)films with dual-active sites are fabricated to address this issue,which demonstrates an amplified humidity-sensing signal performance.By regulation of monomers and functional groups,these COF films can be pre-engineered to achieve high response,wide detection range,fast response,and recovery time.Under the condition of relative humidity ranging from 13 to 98%,the COFTAPB-DHTA film-based humidity sensor exhibits outstanding humidity sensing perfor-mance with an expanded response value of 390 times.Furthermore,the response values of the COF film-based sensor are highly linear to the relative humidity in the range below 60%,reflecting a quantitative sensing mechanism at the molecular level.Based on the dual-site adsorption of the(-C=N-)and(C-N)stretching vibrations,the revers-ible tautomerism induced by hydrogen bonding with water molecules is demonstrated to be the main intrinsic mechanism for this effective humidity detection.In addition,the synthesized COF films can be further exploited to effectively detect human nasal and oral breathing as well as fabric permeability,which will inspire novel designs for effective humidity-detection devices. | Xiyu Chen Lingwei Kong Jaafar Abdul-Aziz Mehrez Chao Fan Wenjing Quan Yongwei Zhang Min Zeng Jianhua Yang Nantao Hu Yanjie Su Hao Wei Zhi Yang | 2023 | Nano-Micro Letters2023,15,9: | 2 |
| 7 | The reproductive behavior of golden monkeys in captivity (Rhinopithecus roxellana roxellana)显示文摘 | Renmei Ren Kanghui Yan Yanjie Su Hanjun Qi Bing Liang Wenyong Bao Frans B. M. Waal | 1995 | Primates1995,,1: | 1 |
| 8 | Jiao Shao: A forerunner of physiological psychology and comparative psychology in China显示文摘Jiao Shao (邵郊,1923-2017)(Fig. 1), who was an expert in physiological psychology and comparative psychology in China, made important contributions to the development of physiological psychology and comparative psychology, scientific research and personnel training (The obituary of Jiao Shao, 2017). He was a member of the Second Discipline Review Group of the State Council (Pedagogy), the director of the third and fifth sessions of Chinese Psychological Society (CPS), the chairman of the Professional Committee on Physiological Psychology of the CPS (1984-1988), an editorial advisory board member of the Encyclopedia of China Publishing House (First Edition), an editorial board member of Acta Psychologica Sinica (1979-1991), and he was honored as a fellow of the CPS (2007). | Lijun Wang Yanyan Qian Yanjie Su | 2019 | Protein & Cell2019,10,9: | 1 |
| 9 | Comprehension of metaphor and irony in schizophrenia during remission:The role of theory of mind and IQ显示文摘 | Shuliang Mo Yanjie Su Raymond C K.Chan Jianxin Liu | | 0,,: | 1 |
| 10 | One-pot synthesis of ultranarrow single crystal ZnSe nanowires显示文摘 | Hao Wei Yanjie Su Shangzhi Chen | | 0,,: | 1 |
| 11 | A non-invasive smart scaffold for bone repair and monitoring显示文摘Existing strategies for bone defect repair are difficult to monitor.Smart scaffold materials that can quantify the efficiency of new bone formation are important for bone regeneration and monitoring.Carbon nanotubes(CNT)have promising bioactivity and electrical conductivity.In this study,a noninvasive and intelligent monitoring scaffold was prepared for bone regeneration and monitoring by integrating carboxylated CNT into chemically cross-linked carboxymethyl chitosan hydrogel.CNT scaffold(0.5%w/v)demonstrated improved mechanical properties with good biocompatibility and electrochemical responsiveness.Cyclic voltammetry and electrochemical impedance spectroscopy of CNT scaffold responded sensitively to seed cell differentiation degree in both cellular and animal levels.Interestingly,the CNT scaffold could make up the easy deactivation shortfall of bone morphogenetic protein 2 by sustainably enhancing stem cell osteogenic differentiation and new bone tissue formation through CNT roles.This research provides new ideas for the development of noninvasive and electrochemically responsive bioactive scaffolds,marking an important step in the development of intelligent tissue engineering. | Yazhuo Huang Lingyu Zhang Yongrong Ji Hongpei Deng Mingce Long Shengfang Ge Yanjie Su Siew Yin Chan Xian Jun Loh Ai Zhuang Jing Ruan | 2023 | Bioactive Materials2023,,1: | 0 |
| 12 | Hexagonally ordered microbowl arrays decorated with ultrathin CuInS_(2) nanosheets for enhanced photoelectrochemical performance显示文摘This paper demonstrates the design and fabrication of three-dimensional(3 D) hexagonally ordered microbowl arrays(MBAs) decorated with Cu In S2 nanosheets for enhanced photoelectrochemical(PEC) performance. The 3 D MBAs are fabricated by a micro-fabrication technique. The ultrathin CuInS2 nanosheets are grown on the 3 D electrodes by solvothermal transformation of Cu film. The photocurrent density of 3 D photocathode(CuInS2@MBAs) is about two times higher than that of the planar counterpart(CuInS2@Planar). The improved PEC performance can be ascribed to the elevated light trapping ability and the increased surface area for loading photocatalysts. In addition, CdS quantum dots as cocatalysts are modified onto the Cu In S2 nanosheets to further enhance the PEC activity because the formed p-n heterojunction can accelerate the separation of photogenerated carriers. As a result, the 3 D photocathode of CuInS2/CdS@MBAs shows an optimal incident photon to current efficiency of 10% at the wavelength of400 nm. It is believed that this work can be generalized to design other hierarchical 3 D photoelectrodes for improved solar water splitting. | Ming Li Le Chen Yanjie Su Huan Yin Kexiang Hu | 2020 | Journal of Energy Chemistry2020,29,12: | 0 |
| 13 | Highly sensitive,humidity-tolerant and flexible NO_(2)sensors based on nanoplate Bi_(2)Se_(3)film显示文摘Recently,two-dimension(2D)materials have fueled considerable interest in the field of gas sensing to cope urgent demands at specific scenarios.Unfortunately,the susceptibility to ambient humidity,and/or fragile operation stability always frustrate their further practicability.To overcome these drawbacks,we proposed one novel flexible gas sensor based on bismuth selenide(Bi_(2)Se_(3))nanoplates for sensitive NO_(2)detection at room temperature.The as-prepared Bi_(2)Se_(3)sensor exhibited favorable sensing performance,including remarkable NO_(2)selectivity,high response of 120%and fast response time of 81 s toward 5ppm NO_(2),an ultralow detection limit of 100 ppb,and nice stability.Besides,the excellent humidity tolerance and mechanical flexibility endowed Bi_(2)Se_(3)sensors with admirable reliability under harsh working conditions.The first-principles calculation further revealed the insights of extraordinary NO_(2)selectivity and the underlying gas-sensing mechanism. | Yanjie Wang Cheng Tang Min Su Yixiong Ji Lei Xie Qi Yang Aijun Du Yong Zhou Jun Yang | 2023 | Chinese Chemical Letters2023,34,8: | 0 |
| 14 | Notum protects against myocardial infarction-induced heart dysfunction by alleviating cardiac fibrosis显示文摘Background and Objective:Cardiac fibrosis is a pathological reparative process that follows myocardial infarctionand is associated with compromised cardiac systolic and reduced cardiac compliance.The Wnt signaling pathway is closely implicated in organ fibrosis,and Notum,a highly conserved secreted inhibitor,modulates Wnt signaling.The objective of this study was to explore the role and mechanism of Notum in cardiac fibrosis.Methods:A mouse model of cardiac remodeling was established through left coronary artery ligation surgery,with the addition of Notum injection following myocardial infarction surgery.The protective effect of Notum on myocardial infarction was assessed by evaluating cardiac function,including survival rate,echocardiographic assessment,and cardiac contraction analyses.Inflammatory cell necrosis and infiltration were confirmed through H&E and Masson staining.The expression of fibrosis-related genes andβ-catenin pathway markers was detected using Western blot quantificational RT-PCR(qRT-PCR).Additionally,EdU,wound healing,and immunofluorescence staining analyses were performed to detect the effect of Notum's in transforming growth factor beta-1(TGF-β1)induced myofibroblast transformation.Results:The administration of Notum treatment resulted in enhanced survival rates,improved cardiac function,and decreased necrosis and infiltration of inflammatory cells in mice subjected to left coronary artery ligation.Furthermore,Notum effectively impeded the senescence of cardiac fibroblasts and hindered their pathological transformation into cardiac fibroblasts.Additionally,it significantly reduced collagen production and attenuated the activation of the Wnt/β-catenin pathway.Our preliminary investigations successfully demonstrated the therapeutic potential of Notum in both fibroblasts in vitro and in a mouse model of myocardial infarction-induced cardiac fibrosis in vivo.Conclusion:Notum inhibition of the Wnt/β-catenin signaling pathway and cardiac fibroblast senescence ultimately hampers the onset of cardiac fibrosis.Our findings suggest that Notum could represent a new therapeutic strategy for the treatment of cardiac fibrosis. | Tongzhu Jin Zhen Ye Ruonan Fang Yue Li Wei Su Qianqian Wang Tianyu Li Hongli Shan Yanjie Lu Haihai Liang | 2024 | Frigid Zone Medicine2024,4,1: | 0 |
| 15 | Moving Developmental Constructs across Cultural Boundaries: Lessons from Cross-Cultural Research on Attachment and Parenting Styles显示文摘 | Qian Wang Yanjie Su | 2005 | 美中教育评论2005,2,3: | 0 |
| 16 | A novel channel-wall engineering strategy for two-dimensional cationic covalent organic frameworks:Microwave-assisted anion exchange and enhanced carbon dioxide capture显示文摘A novel channel-wall engineering strategy of the porous materials cationic covalent organic frameworks(COFs)is established based on rapid microwave-assisted anion exchange reaction and utilized to prepare a set of new COFs.Due to the interaction between the carbon dioxide(C02)and the acetate anion,the resulting SJTU-COF-AcO shows greatly enhanced carbon dioxide capacity up to 1.7 times of the pristine COF.The effect of the counteranions to CO2 capacity in the cationic COFs is investigated for the first time,which demonstrates that our channel-wall engineering strategy is a promising way to tailor the property of COFs for high CO2 capacity. | Yusen Ding Yan Wang Yanjie Su Zhi Yang Jiaqiang Liu Xiaolin Hua Hao Wei | 2020 | Chinese Chemical Letters2020,31,1: | 0 |
| 17 | Restraining the escape of lattice oxygen enables superior cyclic performance towards high-voltage Ni-rich cathodes显示文摘Layered Ni-rich cathodes,operating at high voltage with superior cyclic performance,are required to develop future high-energy Li-ion batteries.However,the worst lattice oxygen escape at the high-voltage region easily causes structural instability,rapid capacity fading and safety issues upon cycling.Here,we report a dual-track strategy to fully restrain the escape of lattice oxygen from Ni-rich cathodes within 2.7-4.5 V by one-step Ta doping and CeO_(2)coating according to their different diffusion energy barriers.The doped Ta can alleviate the charge compensation of oxygen anions as a positive charge centre to reduce the lattice oxygen escape and induce the formation of elongated primary particles,significantly inhibiting microcrack generation and propagation.Additionally,the layer of CeO_(2)coating effectively captures the remaining escaped oxygen and then the captured oxygen feeds back into the lattice during subsequent discharge.The resultant Ni-rich cathode enables a capacity of 231.3 mAh g^(-1)with a high initial coulombic efficiency of 93.5%.A pouch-type full cell comprising this cathode and a graphite anode exhibits>1000 times life cycles at 1C in the 2.7-4.5 V range,with 90.9%capacity retention. | Haifeng Yu Huawei Zhu Hongliang Jiang Xiaozhi Su Yanjie Hu Hao Jiang Chunzhong Li | 2023 | National Science Review2023,10,1: | 0 |
| 18 | Study of Photostimulable Luminescence Materials Sr_9Ca(PO_4)_6Cl_2:Eu显示文摘The polycrystalline Sr9Ca(PO4)6Cl2:Eu has been synthesized by solid state reaction.The reaction condition,the appropriateraw materials and their quantity used,which may affect the photostimulable luminescence (PSL),have been systematically inves-tigated.The properties of this PSL phosphor as a material for storing and reproducing the X-ray image in computer-aidedradiography have been reported briefly. | Song Qingfang China Criminal Police Institute,Shenyang 110035Wang Yanji Zhao Wei Su Mianzeng Department of Chemistry,Peking University,Beijing 100871 | 1989 | Rare Metals1989,9,4: | 0 |
| 19 | Variations in the oxytocin receptor gene and prosocial behavior:moderating effects of situational factors显示文摘Humans are the most prosocial primate species and they often exhibit high levels of prosocial behavior toward genetically unrelated individuals.Traditional evolutionary theories are not sufficient to explain the individual differences and mechanisms related to prosociality.In this study,we focused on the gene–situation interaction in prosocial behaviors,and the patterns of genotype variance related to cooperation and comforting in different situations.We explored the interaction between the oxytocin receptor(OXTR)gene and situations,and the genotype variance under low and high prosociality situations between outgroup and ingroup recipients in a sample of 422 Chinese males.Prosociality was tested by measuring the prosocial tendencies,and prosocial behaviors were tested in cooperation and comforting tasks.OXTR single nucleotide polymorphisms(SNPs)were genotyped using polymerase chain reaction–restriction fragment length polymorphism analysis.The results suggested that the relationship between OXTR SNPs(specifically rs13316193,rs1042778 and rs237887)and prosocial behavior varied across different situations,and that the associations were moderated by the recipient’s identity and the prosocial cost.Our findings indicate the action of a moderating mechanism between the OXTR gene and prosocial behaviors according to situational factors. | Nan WU Yanjie SU | 2018 | Integrative Zoology2018,13,6: | 0 |
| 20 | The single-cell landscape reveals unique tumor subsets and microenvironments associated with poor clinical outcomes in primary testicular diffuse large B-cell lymphoma显示文摘Diffuse large B cell lymphoma(DLBCL)is one of the most prevalent lymphoid malignancies.The current standard of care can cure about two-thirds of DLBCL patients.1 Primary testicular diffuse large B-cell lymphoma(PT-DLBCL)is a rare but highly aggressive form of mature B-cell lymphoma that accounts for approximately 1%-9%of testicular malignancies.Different from nodal DLBCL,PT-DLBCL has a markedly worse prognosis because of inferior response to the current treatment regimens and significant extranodal tropism.2 Three main questions remained unresolved in the field of PT-DLBCL research. | Zhouliang Bian Benhong Gu Guohai Shi Jiahui Guo Dong Li Hanlin Zengg Bin Jiang Daliu Min Hengchuan Su Yanjie Zhang | 2024 | Genes & Diseases2024,11,1: | 0 |