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| 1 | 2D materials via liquid exfoliation:a review on fabrication and applications显示文摘Since graphene was discovered, the study of two-dimensional(2D) materials with atomic thickness has become a hot spot. To prepare different 2D materials,different methods have been groped, such as mechanical exfoliation, chemical vapor deposition(CVD), liquid-phase exfoliation. This review mainly introduced the sonication liquid-phase exfoliation, an effective method to prepare 2D materials. Compared with mechanical exfoliation and CVD methods, liquid-phase exfoliation is convenient and costeffective and provides high yield. We focused on both theoretical and experimental details of this method. This method was reviewed according to the development of 2D materials from graphene, h-BN to transition metal chalcogenides(TMDs) and black phosphorus nanosheets.We discussed the applications of liquid-exfoliated 2D materials including micro- and nanoelectrical devices,photoelectric devices, and energy storage devices. | Chengxue Huo Zhong Yan Xiufeng Song Haibo Zeng | 2015 | Science Bulletin2015,60,23: | 20 |
| 2 | Capping CsPbBr3 with ZnO to improve performance and stability of perovskite memristors显示文摘技术与快信息存储为设备导致了迫切需要并且处理的信息的快速的发展,高密度,和低精力消费。Memristors 被认为是有所有上述的优点的下一代的记忆设备。最近,有机金属的卤化物 perovskites 被报导为 memristors 正在答应活跃材料,尽管他们有差的稳定性和低劣性能。此处,我们第一次基于无机的卤化物 perovskite (CsPbBr 3, CPB ) 报导稳定、高效的 memristors 的制造。设备有电导致地双极的抵抗切换(物件)并且有大开/关比率的存储器行为(> 10 5),低工作电压(< 1 V )并且精力消费,长数据保留(> 10 4 s ),并且高环境的稳定性,它经由在设备以内盖住的 ZnO 被完成。如此的一个图案能被使适应各种各样的设备。另外,在 CPB 和 ZnO 之间的异质接面以快速的反应速度赋予设备以超过 10 3 的导致光的物件效果(< 1 ms ) ,它使我们能由同时改变光和电场调节电阻状态。信息存储和处理能力的联合完成的如此的多功能的设备为超越传统的体系结构的未来计算有潜在的应用程序。 | Ye Wu Yi Wei Yong Huang Fei Cao Dejian Yu Xiaoming Li Haibo Zeng | 2017 | Nano Research2017,10,5: | 17 |
| 3 | Recent advances and prospects toward blue perovskite materials and light-emitting diodes显示文摘Perovskite based light-emitting diodes(PeLEDs)have become a powerful candidate for next-generation solid-state lightings and high-definition displays due to their high photoluminescence quantum yield(PLQY),tunable emission wavelength over the visible spectrum,and narrow emission linewidths.Over the past few years,the development of red-and green-emissive PeLEDs has rapidly increased,and the corresponding external quantum efficiencies(EQE)have exceeded 20%.However,the research progress of blue-emitting PeLEDs is limited by its poor material quality and inappropriate device structure.Currently,the maximum EQE of blue PeLED is only 6.2%,which is far from the industrialization requirements.In order to promote the development of blue PeLEDs,we summarize the recent research progress of blue perovskite materials and LEDs and discuss several fatal challenges,mainly embodied in low efficiency and poor stability.In order to overcome these challenges,detailed analysis and strategies are put forward in terms of the materials and devices.For the former,we summarize the feasible strategy for the preparation of efficient and stable blue-emissive perovskites using component engineering.For the latter,we analyze the advantages and limitations of the different strategies for blue-emissive perovskite in LEDs.At the end of the review,a comprehensive outlook is detailed,including future development directions and several technical problems to be solved.Thus,we aim to highlight the significance and promote the industrialization of PeLEDs. | Tao Fang Fengjuan Zhang Shichen Yuan Haibo Zeng Jizhong Song | 2019 | InfoMat2019,1,2: | 9 |
| 4 | Nanowire-based transparent conductors for flexible electronics and optoelectronics显示文摘As the necessary components for various modern electronic and optoelectronic devices, novel transparent electrodes(TEs) with the low cost, abundance features, and comparable performance of indium tin oxide(ITO) are inquired materials. Metal nanowires(NWs) with the excellent photoelectric properties as next-generation TE candidates have widely applications in smart optoelectronic devices such as electronic skins, wearable electronics, robotic skins, flexible and stretchable displays. This review describes the synthetic strategies for the preparation of metal NWs, the assemble process for metal NW films,and the practical aspects of metal NW films with the desired properties in various low-cost, flexible,and solution-based photoelectric devices. | Jie Xue Jizhong Song Yuhui Dong Leimeng Xu Jianhai Li Haibo Zeng | 2017 | Science Bulletin2017,62,2: | 8 |
| 5 | Perovskite light-emitting/detecting bifunctional fibres for wearable LiFi communication显示文摘Light fidelity(LiFi),which is emerging as a compelling technology paradigm shifting the common means of highcapacity wireless communication technologies,requires wearable and full-duplex compact design because of its great significance in smart wearables as well as the‘Internet of Things’.However,the construction of the key component of wearable full-duplex LiFi,light-emitting/detecting bifunctional fibres,is still challenging because of the conflicting process between carrier separation and recombination,as well as the highly dynamic film-forming process.Here,we demonstrate light-emitting/detecting bifunctional fibres enabled by perovskite QDs with hybrid components.The hybrid perovskite inks endow fibres with super-smooth QD films.This,combined with the small exciton binding energy and high carrier mobility of perovskite QDs,enables successful integration of electroluminescence and photodetection into monofilaments.The bifunctional fibres possess the narrowest electroluminescence full width at half maximum of ~19 nm and,more importantly,the capability for simultaneously transmitting and receiving information.The successful fabrication of narrow emission full-duplex LiFi fibres paves the way for the fabrication and integration of low crosstalk interoperable smart wearables. | Qingsong Shan Changting Wei Yan Jiang Jizhong Song Yousheng Zou Leimeng Xu Tao Fang Tiantian Wang Yuhui Dong Jiaxin Liu Boning Han Fengjuan Zhang Jiawei Chen Yongjin Wang Haibo Zeng | 2020 | Light(Science & Applications)2020,9,1: | 7 |
| 6 | Perovskite nanocrystals:synthesis,properties and applications显示文摘Halide perovskites have emerged as superstar materials for optoelectronic devices. Besides the fever of research in solar cells, these materials show great promise on light emitting diodes(LEDs), photodetectors and lasers as well. Rapid advances in bulk perovskite materials aroused universal interest for the development of perovskite nanocrystals, inspired by the great progress of classic colloidal semiconductor quantum dots. Perovskite nanocrystals have been synthesized based on solution process and exhibited high luminescence quantum yield, sharp emission peak, and emission color tunability. Significant progresses have been made about the application of perovskite nanocrystals for LED and lasers in recent years. In this paper, we will comprehensively introduce the synthesis strategies, physical and chemical characteristics, as well as their applications in optoelectronic devices. | Pengfei Fu Qingsong Shan Yuequn Shang Jizhong Song Haibo Zeng Zhijun Ning Jinkang Gong | 2017 | Science Bulletin2017,62,5: | 6 |
| 7 | Highly effective and reproducible surface-enhanced Raman scattering substrates based on Ag pyramidal arrays显示文摘 | Yandong Wang Nan Lu Wentao Wang Lingxiao Liu Lei Feng Zhoufang Zeng Haibo Li Weiqing Xu Zijian Wu Wei Hu Yanqing Lu Lifeng Chi | 2013 | Nano Research2013,6,3: | 6 |
| 8 | Virtual reality-based rehabilitation in patients following total knee arthroplasty:a systematic review and meta-analysis of randomized controlled trials显示文摘Background:Physical therapy is regarded as an essential aspect in achieving optimal outcomes following total knee arthroplasty(TKA).The coronavirus disease 2019(COVID-19)pandemic has made face-to-face rehabilitation inaccessible.Virtual reality(VR)is increasingly regarded as a potentially effective option for offering health care interventions.This systematic review and meta-analysis investigate VR-based rehabilitation's effectiveness on outcomes following TKA.Methods:From inception to May 22,2021,PubMed/Medline,Embase,Web of Science,the Cochrane Central Register of Controlled Trials,Scopus,PsycINFO,Physiotherapy Evidence Database,China National Knowledge Infrastructure,and Wanfang were comprehensively searched to identify randomized controlled trials(RCTs)evaluating the effect of VR-based rehabilitation on patients following TKA according to the Preferred Reporting Items for Systematic Reviews and Meta-Analyses statement and the Cochrane Handbook for Systematic Reviews of Interventions.Results:Eight studies were included in the systematic review,and seven studies were included in the meta-analysis.VR-based rehabilitation significantly improved visual analog scale(VAS)scores within 1 month(standardized mean difference[SMD]:−0.44;95%confidence interval[CI]:−0.79 to−0.08,P=0.02),the Western Ontario and McMaster Universities Osteoarthritis Index(WOMAC)within 1 month(SMD:−0.71;95%CI:−1.03 to−0.40,P<0.01),and the Hospital for Special Surgery Knee Score(HSS)within 1 month and between 2 months and 3 months(MD:7.62;95%CI:5.77 to 9.47,P<0.01;MD:10.15;95%CI:8.03 to 12.27,P<0.01;respectively)following TKA compared to conventional rehabilitation.No significant difference was found in terms of the Timed Up and Go(TUG)test.Conclusions:VR-based rehabilitation improved pain and function but not postural control following TKA compared to conventional rehabilitation.More high-quality RCTs are needed to prove the advantage of VR-based rehabilitation.As the COVID-19 pandemic continues,it is necessary to promote this rehabilitation model. | Linbo Peng Yi Zeng Yuangang Wu Haibo Si Bin Shen | 2022 | Chinese Medical Journal2022,,2: | 5 |
| 9 | Blast-induced rock damage control in Fangchenggang nuclear power station, China显示文摘In the process of blasting excavation, stress wave propagation and gas expansion can basically induce damage to surrounding rocks, which is detrimental to rock mass integrity and engineering safety. In this case, evaluation and control of blast-induced effects are essential to the safety of nearby buildings and integrity of bedrock in blasting field. In Fangchenggang nuclear power station of China, the drill-andblast method was employed for bedrock excavation. In order to reduce the blast-induced damage zone, the wave propagation and associated damage to rock mass should be carefully investigated. In this paper, the wave propagation regressively obtained from field monitoring data was presented based on empirical formula(e.g. Sadovsky formula). The relationship between the peak particle velocity(PPV) at a distance of 30 m away from the charge hole and charge per delay in blast design was derived. Meanwhile,the acoustic tests before and after blasting were conducted to determine the damage depth of rock mass.The charge per delay in blast design was then calibrated based on the blast-induced wave propagation regularity. The results showed that a satisfactory effect was achieved on blast-induced damage control of rock mass. This could be helpful to rock damage control in similar blasting projects. | Yongqing Zeng Haibo Li Xiang Xia Bo Liu Hong Zuo Jinlin Jiang | 2018 | Journal of Rock Mechanics and Geotechnical Engineering2018,10,5: | 3 |
| 10 | High-definition colorful perovskite narrowband photodetector array enabled by laser-direct-writing显示文摘Narrowband photodetectors as specific spectral sensing pixels have drawn intense attention in multispectral detection due to their distinct characteristic of filter-free spectrum discrimination,in which the emerging halide lead perovskites witness a booming development in their performance and wavelength-selectivity from blue to near-infrared light.However,the challenge in integrating perovskite narrowband photodetectors on one chip imposes an impediment on practical application.In this work,the combination of laser-direct-writing and ion exchange is proposed as an efficient way to fabricate high-definition colorful sensing array with perovskite narrowband photodetector unit as pixel.Under laser irradiation,the photolysis of halocarbon solvent(CHCl_(3),CH_(3)CH_(2)I,etc)releases the halide ions,which brings the ion exchange and gives rise to slow-varying bandgap in single perovskite photoactive film.This ion exchange can be controlled via laser irradiation time and focus point,thus enabling precisely engineerable bandgap.By optimizing the process,it is successfully applied to develop patterned perovskite narrow blue and green photodetectors array with a high-definition of~53 ppi.We believe this result will make a great step forward to integrate multifunctional perovskite devices on one chip,which will pave the way for perovskite optoelectronic device to the commercial application. | Xiaobao Xu Yuhang Dong Yuanzhou Zhang Zeyao Han Jiaxin Liu Dejian Yu Yi Wei Yousheng Zou Bo Huang Jun Chen Haibo Zeng | 2022 | Nano Research2022,15,6: | 2 |
| 11 | Efficient white light emitting diodes based on Cu-doped ZnInS/ZnS core/shell quantum dots显示文摘 | Xi Yuan Jie Hua Ruosheng Zeng Dehua Zhu Wenyu Ji Pengtao Jing Xiangdong Meng Jialong Zhao Haibo Li | 2014 | Nanotechnology2014,,43: | 2 |
| 12 | Research progress of full electroluminescent white light-emitting diodes based on a single emissive layer显示文摘Carbon neutrality,energy savings,and lighting costs and quality have always led to urgent demand for lighting technology innovation.White light-emitting diodes(WLEDs)based on a single emissive layer(SEL)fabricated by the solution method have been continuously researched in recent years;they are advantageous because they have a low cost and are ultrathin and flexible.Here,we reviewed the history and development of SEL-WLEDs over recent years to provide inspiration and promote their progress in lighting applications.We first introduced the emitters and analysed the advantages of these emitters in creating SEL-WLEDs and then reviewed some cases that involve the above emitters,which were formed via vacuum thermal evaporation or solution processes.Some notable developments that deserve attention are highlighted in this review due to their potential use in SEL-WLEDs,such as perovskite materials.Finally,we looked at future development trends of SEL-WLEDs and proposed potential research directions. | Hengyang Xiang Run Wang Jiawei Chen Fushan Li Haibo Zeng | 2021 | Light(Science & Applications)2021,10,11: | 2 |
| 13 | An economic feasibility study of O 2 /CO 2 recycle combustion technology based on existing coal-fired power plants in China显示文摘 | Jie Xiong Haibo Zhao Chuguang Zheng Zhaohui Liu Lingda Zeng Hao Liu Jianrong Qiu | 2008 | Fuel2008,,6: | 2 |
| 14 | Design and experiment of vertical pneumatic fertilization system with spiral Geneva mechanism显示文摘In the traditional fertilization method,a large amount of fertilizer is applied,which causes congestion easily.It is not conducive to the sustainable development of agriculture.In this work,a vertical pneumatic fertilization system with a spiral Geneva mechanism was designed according to the operational requirements of variable-rate and smooth fertilization.The uniformity in discharging fertilizer with different spiral angles was simulated and analyzed by extended discrete element method(EDEM)based simulation software,from where the spiral angle of the fertilizer discharge wheel was determined to be 45°.The fertilization system includes a fertilizer apparatus with a spiral Geneva mechanism,whose optimal performance parameters were obtained from the bench experiment.The accuracy and uniformity of the fertilizer application system were taken as the evaluation indicators.The linear relationships of the discharged amount of fertilizer with the rotational speed and the opening of the fertilizer discharging wheel were verified by both static blowing fertilization and field experiments.The static blowing experimental results show that the discharged amount of fertilizer has a high linear correlation and accuracy with both the opening and rotational speed,and the highest correlation occurs with the rotational speed.The rotational speed and opening have significant effects on the discharged amount of fertilizer and the average coefficient of variation.The effect of the rotational speed was the most significant.According to the model obtained by multiple regression fittings,the optimal parameters were determined when the average coefficient of variation was small,the rotational speed was 15.9 r/min and the opening was 34.4 mm.Therefore,the purpose of precise fertilization can be achieved by adjusting the opening or rotational speed in a way to get the exact amount of fertilizer discharged as required by the corresponding crops.The field experiment showed that the variation coefficient of each fertilizer discharged decreases first and then increases with an increasing opening under different rotational speeds,which is consistent with the theoretical value.When the opening was 40 mm or 50 mm,the variation coefficient reached the minimum value,which is far less than the qualified index of 7.8%.In the static blowing experiment and the dynamic field experiment,the stability of the fertilizer discharging device can be significantly enhanced with the utilization of the pneumatic conveying fertilizer.This study can provide a theoretical reference for parameter selection and optimization of vertical spiral fertilization systems. | Haibo Chen Jingfu Zheng Shaojie Lu Shan Zeng Silong Wei | 2021 | International Journal of Agricultural and Biological Engineering2021,14,4: | 2 |
| 15 | White light-emitting diodes from perovskites显示文摘White light-emitting diodes(WLEDs),as key infrastructure,play an important role in the field of lighting and display.In the past few decades,many methods were developed to prepare WLEDs.A common strategy is to use blue LEDs to excite yttrium aluminum garnet(YAG)phosphors and generate composite white light,which is now the main technology for commercial lighting.In 2014,Nobel Prize in Physics was awarded to Nakamura et al.for their contribution to blue LEDs[1,2]. | Hengyang Xiang Chuantian Zuo Haibo Zeng Liming Ding | 2021 | Journal of Semiconductors2021,42,3: | 2 |
| 16 | Center conditions and bifurcation of limit cycles at degenerate singular points in a quintic polynomial differential system 显示文摘 | Chen Haibo Liu Yirong Zeng Xianwu | 2005 | Bull Sci math2005,129,: | 1 |
| 17 | Center conditions and bifurcation of limit cycles at degenerate singular points in a quintic polynomial differential system显示文摘 | Liu Yirong Zeng Xianwu | 2005 | Bulletin des Sciences Mathématiques2005,129,2: | 1 |
| 18 | Controllable Pt/ZnO porous nanocages with improved photocatalytic activity显示文摘 | Zeng Haibo Liu Peisheng Cai Weiping | 2008 | The Journal of Physical Chemistry C2008,112,19: | 1 |
| 19 | Schedule opti- mization of time-triggered systems communicating over the FlexRay static segment 显示文摘 | ZENG HAIBO NATALE M D GHOSAL A | 2011 | IEEE Transactions on Industrial Informatics2011,7,1: | 1 |
| 20 | Two-Dimensional Pnictogen for Field-Effect Transistors显示文摘Two-dimensional(2D)layered materials hold great promise for various future electronic and optoelectronic devices that traditional semiconductors cannot afford.2D pnictogen,group-VA atomic sheet(including phosphorene,arsenene,antimonene,and bismuthene)is believed to be a competitive candidate for next-generation logic devices.This is due to their intriguing physical and chemical properties,such as tunable midrange bandgap and controllable stability.Since the first black phosphorus fieldeffect transistor(FET)demo in 2014,there has been abundant exciting research advancement on the fundamental properties,preparation methods,and related electronic applications of 2D pnictogen.Herein,we review the recent progress in both material and device aspects of 2D pnictogen FETs.This includes a brief survey on the crystal structure,electronic properties and synthesis,or growth experiments.With more device orientation,this review emphasizes experimental fabrication,performance enhancing approaches,and configuration engineering of 2D pnictogen FETs.At the end,this review outlines current challenges and prospects for 2D pnictogen FETs as a potential platform for novel nanoelectronics. | Wenhan Zhou Jiayi Chen Pengxiang Bai Shiying Guo Shengli Zhang Xiufeng Song Li Tao Haibo Zeng | 2019 | Research2019,,1: | 1 |