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| 1 | Graphene-Based Conducting Inks for Direct Inkjet Printing of Flexible Conductive Patterns and Their Applications in Electric Circuits and Chemical Sensors显示文摘打印过程的一系列 inkjet 用基于 graphene 的墨水被学习了。在优化条件下面,使用水溶性的单人赛分层的 graphene 氧化物(去)并且很少分层的 graphene 氧化物( FGO ),各种各样的高图象质量模式能在多样的灵活底层上被打印包括纸, poly (乙烯 terephthalate )(宠物)并且 polyimide ( PI ),与打印技术的简单、便宜的 inkjet 。在塑料底层上打印的基于 graphene 的模式在热减小以后表明了高电的传导性,并且更重要地,他们在严重弯曲周期上保留了一样的传导性。因此,灵活电的电路和一个氢过氧化物化学药品传感器被制作并且显示出优秀表演,演示打印用 graphene 墨水的技术的这简单、实际的 inkjet 的应用程序。结果显示出那 graphene 材料 -- 它能容易在大规模上被生产并且为灵活、便宜的基于 graphene 的电子设备的方便制造拥有突出的电子性质有伟人潜力,由使用打印技术的简单 inkjet。 | Lu Huang Yi Huang diajie Liang Xiangjian Wan Yongsheng Chen | 2011 | Nano Research2011,4,7: | 31 |
| 2 | Hybrid Material of Graphene and Poly(3,4-ethyldioxythiophene)with High Conductivity,Flexibility,and Transparency显示文摘A novel hybrid material prepared from graphene and poly(3,4-ethyldioxythiophene)(PEDOT)shows excellent transparency,electrical conductivity,and good flexibility,together with high thermal stability and is easily processed in both water and organic solvents.Conductivities of the order of 0.2 S/cm and light transmittance of greater than 80%in the 4001800 nm wavelength range were observed for fi lms with thickness of tens of nm.Practical applications in a variety of optoelectronic devices are thus expected for this transparent and flexible conducting graphene-based hybrid material。 | Yanfei Xu Yan Wang Jiajie Liang Yi Huang Yanfeng Ma Xiangjian Wan Yongsheng Chen | 2009 | Nano Research2009,2,4: | 23 |
| 3 | A chlorinated low-bandgap small-molecule acceptor for organic solar cells with 14.1% efficiency and low energy loss显示文摘A new acceptor-donor-acceptor(A-D-A) type small-molecule acceptor NCBDT-4 Cl using chlorinated end groups is reported.This new-designed molecule demonstrates wide and efficient absorption ability in the range of 600–900 nm with a narrow optical bandgap of 1.40 eV. The device based on PBDB-T-SF:NCBDT-4 Cl shows a power conversion efficiency(PCE) of 13.1%without any post-treatment, which represents the best result for all as-cast organic solar cells(OSCs) to date. After device optimizations, the PCE was further enhanced to over 14% with a high short-circuit current density(Jsc) of 22.35 m A cm-2 and a fill-factor(FF) of 74.3%. The improved performance was attributed to the more efficient photo-electron conversion process in the optimal device. To our knowledge, this outstanding efficiency of 14.1% with an energy loss as low as 0.55 eV is among the best results for all single-junction OSCs. | Bin Kan Huanran Feng Huifeng Yao Meijia Chang Xiangjian Wan Chenxi Li Jianhui Hou Yongsheng Chen | 2018 | Science China Chemistry2018,61,10: | 9 |
| 4 | Chronic Intermittent Hypobaric Hypoxia Ameliorates Renal Vascular Hypertension Through Up-regulating NOS in Nucleus Tractus Solitarii显示文摘Chronic intermittent hypobaric hypoxia(CIHH)is known to have an anti-hypertensive effect, which might be related to modulation of the baroreflex in rats with renal vascular hypertension(RVH). In this study, RVH was induced by the 2-kidney-1-clip method(2 K1 C) in adult male Sprague-Dawley rats. The rats were then treated with hypobaric hypoxia simulating 5000 m altitude for 6 h/day for 28 days. The arterial blood pressure(ABP), heart rate(HR), and renal sympathetic nerve activity(RSNA) were measured before and after microinjection of L-arginine into the nucleus tractus solitarii(NTS) in anesthetized rats.Evoked excitatory postsynaptic currents(eEPSCs) and spontaneous EPSCs(sEPSCs) were recorded in anterogradely-labeled NTS neurons receiving baroreceptor afferents. We measured the protein expression of neuronal nitric oxide synthase(nNOS) and endothelial NOS(eNOS) in the NTS. The results showed that the ABP in RVH rats was significantly lower after CIHH treatment. The inhibition of ABP, HR, and RSNA induced by L-arginine was less in RVH rats than in sham rats, and greater in the CIHHtreated RVH rats than the untreated RVH rats. The eEPSC amplitude in NTS neurons receiving baroreceptor afferents was lower in the RVH rats than in the sham rats and recovered after CIHH. The protein expression of nNOS and e NOS in the NTS was lower in the RVH rats than in the sham rats and this decrease was reversed by CIHH. In short, CIHH treatment decreases ABP in RVH rats via upregulating NOS expression in the NTS. | Na Li Yue Guan Yan-Ming Tian Hui-Jie Ma Xiangjian Zhang Yi Zhang Sheng Wang | 2019 | Neuroscience Bulletin2019,35,1: | 9 |
| 5 | Glycolysis reprogramming in cancer-associated fibroblasts promotes the growth of oral cancer through the lncRNA H19/miR-675-5p/PFKFB3 signaling pathway显示文摘As an important component of the tumor microenvironment,cancer-associated fibroblasts(CAFs)secrete energy metabolites to supply energy for tumor progression.Abnormal regulation of long noncoding RNAs(lncRNAs)is thought to contribute to glucose metabolism,but the role of lncRNAs in glycolysis in oral CAFs has not been systematically examined.In the present study,by using RNA sequencing and bioinformatics analysis,we analyzed the lncRNA/mRNA profiles of normal fibroblasts(NFs)derived from normal tissues and CAFs derived from patients with oral squamous cell carcinoma(OSCC).LncRNA H19 was identified as a key lncRNA in oral CAFs and was synchronously upregulated in both oral cancer cell lines and CAFs.Using small interfering RNA(siRNA)strategies,we determined that lncRNA H19 knockdown affected proliferation,migration,and glycolysis in oral CAFs.We found that knockdown of lncRNA H19 by siRNA suppressed the MAPK signaling pathway,6-phosphofructo-2-kinase/fructose-2,6-biphosphatase 3(PFKFB3)and miR-675-5p.Furthermore,the lncRNA H19/miR-675-5p/PFKFB3 axis was involved in promoting the glycolysis pathway in oral CAFs,as demonstrated by a luciferase reporter system assay and treatment with a miRNA-specific inhibitor.Our study presents a new way to understand glucose metabolism in oral CAFs,theoretically providing a novel biomarker for OSCC molecular diagnosis and a new target for antitumor therapy. | Jin Yang Xueke Shi Miao Yang Jingjing Luo Qinghong Gao Xiangjian Wang Yang Wu Yuan Tian Fanglong Wu Hongmei Zhou | 2021 | International Journal of Oral Science2021,13,1: | 8 |
| 6 | Large-area high quality PtSe2 thin film with versatile polarity显示文摘Two-dimensional(2D)materials have attracted increasing attention for their outstanding structural and electrical properties.However,for mass-production of field effect transistors(FETs)and potential applications in integrated circuits,large-area and uniform 2D thin films with high mobility,large on-off ratio,and desired polarity are needed to synthesize firstly.Here,a transfer-free growth method for platinum diselenide(PtSe2)films has been developed.The PtSe2 films have been synthesized with various thicknesses in centimeter-sized scale.Typical FET made from a few layer PtSe2 show p-type unipolar,with a high field-effect hole mobility of 6.2 cm^(2) V^(−1) s^(−1) and an on-off ratio of 5×10^(3).The versatile semimetal-unipolar-ambipolar transition in synthesized PtSe2 films is also firstly observed as the thickness thinning.This work realizes the large-scale preparation of PtSe2 with prominent electrical properties and provides a new strategy for polarity's modulation. | Wei Jiang Xudong Wang Yan Chen Guangjian Wu Kun Ba Ningning Xuan Yangye Sun Peng Gong Jingxian Bao Hong Shen Tie Lin Xiangjian Meng Jianlu Wang Zhengzong Sun | 2019 | InfoMat2019,1,2: | 5 |
| 7 | Discovery and Analysis of Shale Gas in a Carboniferous Reservoir and its Enrichment Characteristics in the Northern Nanpanjiang Depression, Guizhou Province, China显示文摘Shale gas resources are considered to be extremely abundant in southern China,which has dedicated considerable attention to shale gas exploration in recent years.Exploration of shale gas has considerably progressed and several breakthroughs have been made in China.However,shale gas explorations are still scarce.Summary and detailed analysis studies on black shale reservoirs are still to be performed for many areas.This lack of information slows the progress of shale gas explorations and results in low quantities of stored black shale.The Carboniferous Dawuba Formation,which is widely distributed and considerably thick,is one of the black shale formations targeted for shale gas exploration in southern China in the recent years.The acquisition and analysis of total organic carbon,vitrinite reflectance,types of organic matter,mineral composition,porosity,and permeability are basic but important processes.In addition,we analyzed the microscopic pores present in the shale.This study also showesd the good gas content of the Dawuba Formation,as well as the geological factors affecting its gas content and other characteristics.To understand the prospect of exploration,we compared this with other shale reservoirs which have been already successfully explored for gas.Our comparison showesd that those shale reservoirs have similar but not identical geological characteristics. | LU Shufan LUO Xiangjian DU Shengjiang HE Ben FU Hongbin LIU Kuiyong | 2019 | Acta Geologica Sinica(English Edition)2019,93,3: | 5 |
| 8 | Towards Flexible All-Carbon Electronics:Flexible Organic Field-Effect Transistors and Inverter Circuits Using Solution-Processed All-Graphene Source/Drain/Gate Electrodes显示文摘Flexible organic field-effect transistors(OFETs)using solution-processable functionalized graphene for all the electrodes(source,drain,and gate)have been fabricated for the first time.These OFETs show performance comparable to corresponding devices using Au electrodes as the source/drain electrodes on SiO2/Si substrates with Si as the gate electrode.Also,these devices demonstrate excellent flexibility without performance degradation over severe bending cycles.Furthermore,inverter circuits have been designed and fabricated using these all-graphene-electrode OFETs.Our results demonstrate that the long-sought dream for all-carbon and flexible electronics is now much closer to reality. | Yongsheng Chen Yanfei Xu Kai Zhao Xiangjian Wan Jiachun Deng Weibo Yan | 2010 | Nano Research2010,3,10: | 5 |
| 9 | Recent progress in organic solar cells(PartⅠmaterial science)显示文摘During past several years,the photovoltaic performances of organic solar cells(OSCs)have achieved rapid progress with power conversion efficiencies(PCEs)over 18%,demonstrating a great practical application prospect.The development of material science including conjugated polymer donors,oligomer-like organic molecule donors,fused and nonfused ring acceptors,polymer acceptors,single-component organic solar cells and water/alcohol soluble interface materials are the key research topics in OSC field.Herein,the recent progress of these aspects is systematically summarized.Meanwhile,the current problems and future development are also discussed. | Yahui Liu Bowen Liu Chang-Qi Ma Fei Huang Guitao Feng Hongzheng Chen Jianhui Hou Lingpeng Yan Qingya Wei Qun Luo Qinye Bao Wei Ma Wei Liu Weiwei Li Xiangjian Wan Xiaotian Hu Yanchun Han Yaowen Li Yinhua Zhou Yingping Zou Yiwang Chen Yongfang Li Yongsheng Chen Zheng Tang Zhicheng Hu Zhi-Guo Zhang Zhishan Bo | 2022 | Science China Chemistry2022,65,2: | 5 |
| 10 | Materials Experiment on Tiangong-2 Space Laboratory显示文摘During the China's Tiangong-2(TG-2) flight mission, the experiments of 18 kinds of material samples were conducted in space by using a Multiple Materials Processing Furnace(MMPF) mounted in the orbital module of the TG-2 space laboratory. After the experiments of 12 kinds of samples of the first and second batches were completed successfully, astronauts packed and brought them back to the ground by ShenzhouII spacecraft. By studying processing and formation on semiconductor and optoelectronics materials, metal alloys and metastable materials, functional single-crystal, micro-and nano-composite materials encapsulated in sample ampoules both in space and on Earth, we expect to explore some physical and chemical processes and mechanism of the materials formation that are normally obscured and therefore are difficult to study quantitatively on the ground due to the gravity-induced convection, to obtain the processing and synthesis technology for preparing high quality materials, and lead to the improvement and development of materials processing techniques on Earth, and also develop the experiment device and comprehensive ability for materials experiment in microgravity environment. This report briefly introduces the main points of each research work and preliminary comparative analysis results of 12 samples carried out by scientists undertaking research task. | LI Xiangyang LU Ye MENG Xiangjian WANG Jianlu WANG Reng CHEN Lidong HUA Zile LI Xiaoya SHI Jianlin LIU Jinfeng XU Guisheng WEI Bingbo XIE Wenjun YIN Zhigang ZHANG Xingwang JIANG Hongxiang LI Hong LUO Xinghong ZHANG Haifeng ZHAO Jiuzhou WANG Binbin PAN Mingxiang | 2018 | 空间科学学报2018,38,5: | 4 |
| 11 | A versatile photodetector assisted by photovoltaic and bolometric effects显示文摘The advent of low-dimensional materials with peculiar structure and superb band properties provides a new canonical form for the development of photodetectors.However,the limited exploitation of basic properties makes it difficult for devices to stand out.Here,we demonstrate a hybrid heterostructure with ultrathin vanadium dioxide film and molybdenum ditelluride nanoflake.Vanadium dioxide is a classical semiconductor with a narrow bandgap,a high temperature coefficient of resistance,and phase transformation.Molybdenum ditelluride,a typical two-dimensional material,is often used to construct optoelectronic devices.The heterostructure can realize three different functional modes:(i)the p-n junction exhibits ultrasensitive detection(450 nm-2μm)with a dark current down to 0.2 pA and a response time of 17μs,(ii)the Schottky junction works stably under extreme conditions such as a high temperature of 400 K,and(iii)the bolometer shows ultrabroad spectrum detection exceeding 10μm.The flexible switching between the three modes makes the heterostructure a potential candidate for next-generation photodetectors from visible to longwave infrared radiation(LWIR).This type of photodetector combines versatile detection modes,shedding light on the hybrid application of novel and traditional materials,and is a prototype of advanced optoelectronic devices. | Wei Jiang Tan Zheng Binmin Wu Hanxue Jiao Xudong Wang Yan Chen Xiaoyu Zhang Meng Peng Hailu Wang Tie Lin Hong Shen Jun Ge Weida Hu Xiaofeng Xu Xiangjian Meng Junhao Chu Jianlu Wang | 2020 | Light(Science & Applications)2020,9,1: | 3 |
| 12 | The genetic architecture of growth traits in Salix matsudana under salt stress显示文摘Willow(Salix)is one of the most important ornamental tree species in landscape plants.One species,Salix matsudana,is widely used as a shade tree and border tree because of its soft branches and plump crown.Some varieties of S.matsudana were salt tolerant and could grow normally in coastal regions.However,the molecular mechanisms of salt tolerance for S.matsudana have been less clear.Here,we addressed this issue by performing a mapping experiment containing 195 intraspecific F1 progeny of S.matsudana,derived from salt-sensitive‘yanjiang’and salt-tolerant‘9901’,grown by cuttings in a 100 mM NaCl solution.Growth performance of these progeny under salt stress was investigated,displaying marked genotypic variability with the coefficients of variance of 28.64–86.11%in shoot and root growth traits.We further mapped specific QTLs contributing to these differences to the Salix genome.Of the 204 QTLs identified,a few were detected to explain a remarkably larger portion of the phenotypic variation than many others.Many detected QTLs were found to reside in the region of candidate genes of known biological function.The discovery of growth QTLs expressed under salt stress provides important information for marker-assisted breeding of salt tolerant Salix varieties and founds the basis for the application of S.matsudana in coastal afforestation. | Jian Zhang Huwei Yuan Qingshan Yang Min Li Ying Wang Yujuan Li Xiangjian Ma Feng Tan Rongling Wu | 2017 | Horticulture Research2017,4,1: | 3 |
| 13 | Energy Conversion Efficiency of Rainbow Shape Piezoelectric Transducer显示文摘With the aim to enhance the energy conversion efficiency of the rainbow shape piezoelectric transducer, an analysis model of energy conversion efficiency is established based on the elastic mechanics theory and piezoelectricity theory. It can be found that the energy conversion efficiency of the rainbow shape piezoelectric transducer mainly depends on its shape parameters and material properties from the analysis model. Simulation results show that there is an optimal length ratio to generate maximum energy conversion efficiency and the optimal length ratios and energy conversion efficiencies of beryllium bronze substrate transducer and steel substrate transducer are (0.65, 2.21%) and (0.65, 1.64%) respectively. The optimal thickness ratios and energy conversion efficiencies of beryllium bronze substrate transducer and steel substrate transducer are (1.16, 2.56%) and (1.49, 1.57%) respectively. With the increase of width ratio and initial curvature radius, both the energy conversion efficiencies decrease. Moreover, beryllium bronze flexible substrate transducer is superior to the steel flexible substrate transducer. | LIU Xiangjian CHEN Renwen ZHU Liya | 2012 | Chinese Journal of Aeronautics2012,25,5: | 3 |
| 14 | Recent progress in organic solar cells(PartⅡdevice engineering)显示文摘1 Introduction Organic solar cells(OSCs)belong to a multidisciplinary field composed of chemistry,materials science,physics,engineering,etc.For a better reviewing of this field,we briefly divide the research field of OSCs into two parts:material science and device engineering.In our previous review,the material science part of OSCs,including conjugated polymer donors and acceptors,small molecular donors and acceptors. | Yahui Liu Bowen Liu Chang-Qi Ma Fei Huang Guitao Feng Hongzheng Chen Jianhui Hou Lingpeng Yan Qingya Wei Qun Luo Qinye Bao Wei Ma Wei Liu Weiwei Li Xiangjian Wan Xiaotian Hu Yanchun Han Yaowen Li Yinhua Zhou Yingping Zou Yiwang Chen Yuqiang Liu Lei Meng Yongfang Li Yongsheng Chen Zheng Tang Zhicheng Hu Zhi-Guo Zhang Zhishan Bo | 2022 | Science China Chemistry2022,65,8: | 3 |
| 15 | Respiratory Control by Phox2b-expressing Neurons in a Locus Coeruleus–pre B?tzinger Complex Circuit显示文摘The locus coeruleus(LC) has been implicated in the control of breathing.Congenital central hypoventilation syndrome results from mutation of the paired-like homeobox 2 b(Phox2 b) gene that is expressed in LC neurons.The present study was designed to address whether stimulation of Phox2 b-expressing LC(Phox2 b~(LC)) neurons affects breathing and to reveal the putative circuit mechanism.A Cre-dependent viral vector encoding a Gqcoupled human M3 muscarinic receptor(hM3 Dq) was delivered into the LC of Phox2 b-Cre mice.The hM3 Dqtransduced neurons were pharmacologically activated while respiratory function was measured by plethysmography.We demonstrated that selective stimulation of Phox2 b~(LC) neurons significantly increased basal ventilation in conscious mice.Genetic ablation of these neurons markedly impaired hypercapnic ventilatory responses.Moreover,stimulation of Phox2 b~(LC) neurons enhanced the activity of preBotzinger complex neurons.Finally,axons of Phox2 b~(LC) neurons projected to the preBotzinger complex.Collectively,Phox2 b~(LC) neurons contribute to the control of breathing most likely via an LC-preBotzinger complex circuit. | Na Liu Congrui Fu Hongxiao Yu Yakun Wang Luo Shi Yinchao Hao Fang Yuan Xiangjian Zhang Sheng Wang | 2021 | Neuroscience Bulletin2021,37,1: | 3 |
| 16 | Naoxintong dose effects on inflammatory factor expression in the rat brain following focal cerebral ischemia显示文摘BACKGROUND: Certain components of tetramethylpyrazine, a traditional Chinese medicine, exhibit protective effects against brain injury. OBJECTIVE: To investigate the effects of different Naoxintong doses on expression of nuclear factor-kappa B (κB), interleukin-6, tumor necrosis factor-α, and complement 3 in rats following focal cerebral ischemia. DESIGN, TIME AND SETTING: The randomized experiment was performed at the Laboratory of Neurology, Second Hospital of Hebei Medical University from June 2004 to June 2006. MATERIALS: A total of 150 adult, healthy, male, Sprague Dawley rats, weighing 280-320 g, were selected. Naoxintong powder (mainly comprising szechwan lovage rhizome, milkvetch root, danshen root, and radix angelicae sinensis) was obtained from Buchang Pharmacy Co., Ltd. in Xianyang City of Shanxi Province of China, lot number 040608. METHODS: The rats were randomly assigned into sham operation, saline, high-dose Naoxintong, moderate-dose Naoxintong, and low-dose Naoxintong groups, with 30 rats in each group. Rat models of middle cerebral artery occlusion were established using the suture method, with the exception of the sham operation group. Rats in the high-dose, moderate-dose and low-dose Naoxintong groups received 4, 2, and 1 g/kg Naoxintong respectively, by gavage. Rats in the saline group were treated with 1 mL saline by gavage. All rats were administered by gavage at 5 and 23 hours following surgery, and subsequently, once per day. MAIN OUTCOME MEASURES: At 6, 24, 48, 72 hours, and 7 days following model establishment, brain water content was measured. Histopathological changes in brain tissues were detected using hematoxylin-eosin staining. Expression of nuclear factor-κB, interleukin-6, tumor necrosis factor-α, and complement 3 was examined by immunohistochemistry. RESULTS: A total of 150 rats were included in the final analysis with no loss. Brain water content was significantly increased in the ischemic hemisphere of rats from the saline, as well as the high-dose, moderate-dose, and low-dose Naoxintong groups at 24 hours, which reached a peak at 48 hours. At 6, 24, 48, 72 hours, and 7 days, brain water content was greater in the ischemic hemisphere of rats from the saline, as well as the high-dose, moderate-dose, and low-dose Naoxintong groups, compared with the sham operation group (P < 0.05). At 24 and 48 hours, brain water content was reduced in the high-dose and moderate-dose Naoxintong groups, compared to the saline and low-dose Naoxintong groups (P < 0.05). In the saline, as well as high-dose, moderate-dose, and low-dose Naoxintong groups, neuronal edema was observed at 6 hours surrounding the ischemic sites. Inflammatory cells appeared at 24 hours, reached a peak at 48 hours, and gradually diminished. A small amount of glial cell proliferation and neuronal degeneration were observed in the hippocampus at 72 hours following infarction. Microglial proliferation and aggregation were detected at 7 days after infarction. Expression of nuclear factor-κB, interleukin-6, tumor necrosis factor-α, and complement 3 was significantly less in the high-dose, moderate-dose, and low-dose Naoxintong groups, compared to the sham operation group (P < 0.05). Expression of the above-mentioned inflammatory cytokines was lower in rat brain tissues of the high-dose Naoxintong group, compared to the low-dose Naoxintong group (P < 0.05). CONCLUSION: High-dose Naoxintong and moderate-dose Naoxintong significantly alleviated rat brain edema and decreased expression of nuclear factor-κB, interleukin-6, tumor necrosis factor-α, and complement 3 in brain tissues. The protective effect of high-dose Naoxintong was most significant. | Xiangjian Zhang Li Xu Zuoran Chen Shuchao Hu Liying Zhang Haiyan Li Ruichun Liu | 2008 | Neural Regeneration Research2008,3,10: | 3 |
| 17 | Solution-processable graphene mesh transparent electrodes for organic solar cells显示文摘有好电导率和透明性的 Graphene 网孔电极(GME ) 被标准工业影印石版术和 O2 血浆蚀刻过程用 graphene 答案制作了。器官光电( OPV )用 GME 的房间作为有poly-( 3-hexylthiophene )的混合的透明电极, /phenyl-C61-butyric 酸甲基酉旨( P3HT/PC61BM )作为活跃的层被制作了并且展出2.04%的力量变换效率( PCE ),为透明基于电极的太阳能电池迄今为止报导了的处理答案的 graphene 的最高的 PCE 。 | Qian Zhang Xiangjian Wan Fei Xing Lu Huang Guankui Long Ningbo Yi Wang Ni Zhibo Liu Jianguo Tian Yongsheng Chen | 2013 | Nano Research2013,6,7: | 3 |
| 18 | Design and dynamic analysis of integrated architecture for vibration energy harvesting including piezoelectric frame and mechanical amplifier显示文摘Vibration energy harvesters(VEHs) can transform ambient vibration energy to electricity and have been widely investigated as promising self-powered devices for wireless sensor networks, wearable sensors, and applications of a micro-electro-mechanical system(MEMS). However, the ambient vibration is always too weak to hinder the high energy conversion efficiency. In this paper, the integrated frame composed of piezoelectric beams and mechanical amplifiers is proposed to improve the energy conversion efficiency of a VEH. First, the initial structures of a piezoelectric frame(PF) and an amplification frame(AF) are designed. The dynamic model is then established to analyze the influence of key structural parameters on the mechanical amplification factor. Finite element simulation is conducted to study the energy harvesting performance, where the stiffness characteristics and power output in the cases of series and parallel load resistance are discussed in detail. Furthermore, piezoelectric beams with variable cross-sections are introduced to optimize and improve the energy harvesting efficiency. Advantages of the PF with the AF are illustrated by comparison with conventional piezoelectric cantilever beams. The results show that the proposed integrated VEH has a good mechanical amplification capability and is more suitable for low-frequency vibration conditions. | Xiangjian DUAN Dongxing CAO Xiaoguang LP Yongjun SHEN | 2021 | Applied Mathematics and Mechanics(English Edition)2021,42,6: | 2 |
| 19 | Side chain engineering investigation of non-fullerene acceptors for photovoltaic device with efficiency over 15%显示文摘Side chain engineering plays a substantial role for high-performance organic solar cells (OSCs).Herein,a series of non-fullerene acceptor (NFA) molecules with A-D-A structures,TTCn-4F,with gradient substituent lengths of terminal side chains (T-SCs) on the molecular backbones have been designed and synthesized.The effects of T-SCs length,ranging from hydrogen atom to n-dodecyl,their optoelectronic properties,thin film molecular packing,blend film morphology,and overall photovoltaic performance have been systematically studied.The results show that among this series of molecules,TTC8-4F with n-octyl substituent,showed the best photovoltaic performance when applied with PM6 as the donor due to its favorable morphology,balanced charge mobility,effective exciton dissociation and less charge recombination.Based on this,its ternary device with F-Br as the secondary acceptor achieved a high PCE of 15.34%with the simultaneously enhanced Voc of 0.938 V,Jscof 22.66 mA cm^-2,and FF of 72.15%.These results indicate that the engineering of T-SCs is an effective strategy for designing high-performance NFAs. | Xin Zhang Yunqian Ding Huanran Feng Huanhuan Gao Xin Ke Hongtao Zhang Chenxi Li Xiangjian Wan Yongsheng Chen | 2020 | Science China Chemistry2020,63,12: | 2 |
| 20 | Synthesis, characterization and optical limiting property of covalently oligothiophene-functionalized graphene material显示文摘 | Yongsheng Liu Jiaoyan Zhou Xiaoliang Zhang Zhibo Liu Xiangjian Wan Jianguo Tian Tuo Wang Yongsheng Chen | 2009 | Carbon2009,,13: | 2 |