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| 1 | Recent progress in methane dehydroaromatization: From laboratory curiosities to promising technology显示文摘Direct conversion of methane to benzene or other valuable chemicals is a very promising process for the efficient application of natural gas. Compared with conversion processes that require oxidants, non-oxidative direct conversion is more attractive due to high selectivity to the target product. In this paper, an alternative route for methane dehydrogenation and selective conversion to benzene and hydrogen without the participation of oxygen is discussed. A brief review of the catalysts used in methane dehydroaromatization (MDA) is first given, followed by our current understanding of the location and the active phase of Mo species, the reaction mechanism, the mechanism of carbonaceous deposit and the deactivation of Mo/zeolite catalysts are systematically discussed. Ways to improve the catalytic activity and stability are described in detail based on catalyst and reaction as well as reactor design. Future prospects for methane dehydroaromatization process are also presented. | Shuqi Ma Xiaoguang Guo Lingxiao Zhao Susannah Scott Xinhe Bao | 2013 | Journal of Energy Chemistry2013,22,1: | 17 |
| 2 | Recent progress in terahertz modulation using photonic structures based on two-dimensional materials显示文摘Terahertz(THz)technology has attracted great attention in the past few decades for its unique applications in various fields,including spectroscopy,noninvasive detection,wireless communications,and imaging.In parallel to this,the practical,fast,and broadband modulation of THz waves is becoming indispensable.Two-dimensional(2D)materials exhibit unusual optical and electrical properties,which has prompted tremendous interest and significant advances in THz modulation.This review provides the recent progress in 2D materials-based THz modulators,outlining the operating principles,including all-optical,electro-optic,magneto-optic,and other exotic mechanisms.We focus on the recent advances in THz modulation by the designed photonic structures,such as heterostructure,metamaterial,capacitor,optical cavity,and waveguide integration.Lastly,we discussed the challenges and opportunities for 2D materials-based THz modulators and presented our prospects for the future development. | Ziming Wang Jie Qiao Shuqi Zhao Shilei Wang Chuan He Xutang Tao Shanpeng Wang | 2021 | InfoMat2021,3,10: | 4 |
| 3 | Rab20 is critical for bacterial lipoprotein tolerization-enhanced bactericidal activity in macrophages during bacterial infection显示文摘Bacterial cell wall component-induced tolerance represents an important protective mechanism during microbial infection.Tolerance induced by the TLR2 agonist bacterial lipoprotein(BLP)has been shown to attenuate the inflammatory response,and simultaneously to augment antimicrobial function,thereby conferring its protection against microbial sepsis.However,the underlying mechanism by which BLP tolerance augments bactericidal activity has not been fully elucidated.Here,we reported that the induction of BLP tolerance in murine macrophages upregulated the expression of Rab20,a membrane trafficking regulator,at both the mRNA and protein levels upon bacterial infection.The knockdown of Rab20 with Rab20 specific siRNA(siRab20)did not affect the phagocytosis of Escherichia coli(E.coli),but substantially impaired the intracellular killing of the ingested E.coli in BLP-tolerized macrophages.Furthermore,Rab20 was associated with GFP-E.coli containing phagosomes,and BLP tolerization resulted in the enhanced maturation of GFP-E.coli-containing phagosomes associated with Rab20 and strong lysosomal acidification.The knockdown of Rab20 substantially diminished lysosome acidification and disturbed the fusion of GFP-E.coli containing phagosomes with lysosomes in BLP-tolerized macrophages.These results demonstrate that Rab20 plays a critical role in BLP tolerization-induced augmentation of bactericidal activity via promoting phagosome maturation and the fusion of bacteria containing phagosomes with lysosomes. | Shuqi Zhao Dalin Xi Junwei Cai Wenting Chen Jing Xiang Na Peng Juan Wang Yong Jiang Zhuzhong Mei Jinghua Liu | 2020 | Science China(Life Sciences)2020,63,3: | 2 |
| 4 | Genomic and transcriptomic analysis unveils population evolution and development of pesticide resistance in fall armyworm Spodoptera frugiperda显示文摘The fall armyworm(FAW),Spodoptera frugiperda,is a destructive pest native to America and has recently become an invasive insect pest in China.Because of its rapid spread and great risks in China,understanding of FAW genetic background and pesticide resistance is urgent and essential to develop effective management strategies.Here,we assembled a chromosome-level genome of a male FAW(SFynMstLFR)and compared re-sequencing results of the populations from America,Africa,and China.Strain identification of 163 individuals collected from America,Africa and China showed that both C and R strains were found in the American pop-ulations,while only C strain was found in the Chinese and African populations.Moreover,population geno-mics analysis showed that populations from Africa and China have close relationship with significantly genetic differentiation from American populations.Taken toge-ther,FAWs invaded into China were most likely origi-nated from Africa.Comparative genomics analysis displayed that the cytochrome p450 gene family is extremely expanded to 425 members in FAW,of which 283 genes are specific to FAW.Treatments of Chinese populations with twenty-three pesticides showed the variant patterns of transcriptome profiles,and several detoxification genes such as AOX,UGT and GST spe-cially responded to the pesticides.These findings will be useful in developing effective strategies for manage-ment of FAW in China and other invaded areas. | Furong Gui Tianming Lan Yue Zhao Wei Guo Yang Dong Dongming Fang Huan Liu Haimeng Li Hongli Wang Ruoshi Hao Xiaofang Cheng Yahong Li Pengcheng Yang Sunil Kumar Sahu Yaping Chen Le Cheng Shuqi He Ping Liu Guangyi Fan Haorong Lu Guohai Hu Wei Dong Bin Chen Yuan Jiang Yongwei Zhang Hanhong Xu Fei Lin Bernard Slippers Alisa Postma Matthew Jackson Birhan Addisie Abate Kassahun Tesfaye Aschalew Lemma Demie Meseret Destaw Bayeleygne Dawit Tesfaye Degefu Feng Chen Paul K.Kuria Zachary M.Kinyua Tong-Xian Liu Huanming Yang Fangneng Huang Xin Liu Jun Sheng Le Kang | 2022 | Protein & Cell2022,13,7: | 2 |
| 5 | A new perspective on fuzzy control of the stochastic T-S fuzzy systems with sampled-data显示文摘Dear editor,In the past several decades,stability analysis and synthesis of It?stochastic systems have gradually become the important areas of focus owing to their applications in many real-world systems,such as nuclear,thermal,chemical process,biological,socioeconomic,and immunological systems(1–5)In addition,nonlinearities exist in real plants,which always have more complex analyses than general linear systems.Moreover,the Takagi-Sugeno(TS)fuzzy systems,which are described by a set of fuzzy IF-THEN rules and local linear systems,are widely accepted as convenient tools to address nonlinearities in the systems[6,7]. | Shuqi LI Feiqi DENG Xueyan ZHAO | 2019 | Science China(Information Sciences)2019,62,10: | 2 |
| 6 | Effect of DC electric field on moisture migration characteristics in oil-pressboard显示文摘The moisture content has a great influence on the electric insulation strength of oil-pressboard.Therefore,it is very important to assess the moisture content in power transformers.There is lack of research about the effect of DC electric field on moisture migration.Here,the authors analyse the moisture migration characteristics of oil-press-board under DC electric field.The DC electric field has a greater influence on the moisture content in the oil.Compared with no DC electric field,the moisture content in oil is reduced by 22.91 mg/L at 50℃,while it is reduced by 17.63 mg/L at 70℃.Under the same moisture content in the oil,the moisture content in the pressboard which affected by the DC electric field is higher than the Oommen curve,the maximum dif-ference is 0.88%at 50℃,and 0.05%at 70℃.This result can provide a reference for the revision of existing moisture assessment methods. | Qing Yuan Bo Qi Jianshe Zhao Chunjia Gao Xiao Yang Shuqi Zhang Chengrong Li | 2021 | High Voltage2021,6,4: | 1 |
| 7 | Determination of nitrite with the electrocatalytic property to the oxidation of nitrite on thionine modified aligned carbon nanotubes显示文摘 | Kun Zhao Haiyan Song Shuqi Zhuang Liming Dai Pingang He Yuzhi Fang | 2006 | Electrochemistry Communications2006,,1: | 1 |
| 8 | SARS-CoV-2 Does Not Replicate in Aedes Mosquito Cells nor Present in Field-Caught Mosquitoes from Wuhan显示文摘Dear Editor,Severe acute respiratory syndrome coronavirus 2(SARSCoV-2), the etiologic agent of COVID-19, is an enveloped,positive-sense single-stranded RNA virus that first discovered in December 2019 from a seafood market in Wuhan, China(Zhou et al. 2020). | Han Xia Evans Atoni Lu Zhao Nanjie Ren Doudou Huang Rongjuan Pei Zhen Chen Jin Xiong Raphael Nyaruaba Shuqi Xiao Bo Zhang Zhiming Yuan | 2020 | Virologica Sinica2020,35,3: | 1 |
| 9 | Comparison of the longissimus muscle proteome between obese and lean pigs at 180 days显示文摘 | Anning Li Delin Mo Xiao Zhao Wei Jiang Peiqing Cong Zuyong He Shuqi Xiao Xiaohong Liu Yaosheng Chen | 2013 | Mammalian Genome2013,,1: | 1 |
| 10 | Environmental surveillance of SARS-CoV-2 RNA in wastewater systems and related environments in Wuhan:April to May of 2020显示文摘Wastewater-based epidemiology(WBE)has emerged as an effective environmental surveillance tool in monitoring fecal-oral pathogen infections within a community.Congruently,SARS-Co V-2,the etiologic agent of COVID-19,has been demonstrated to infect the gastrointestinal tissues,and be shed in feces.In the present study,SARS-Co V-2 RNA was concentrated from wastewater,sludge,surface water,ground water,sediment,and soil samples of municipal and hospital wastewater systems and related environments in Wuhan during the COVID-19 middle and low risk periods,and the viral RNA copies quantified using reverse transcription quantitative polymerase chain reaction(RT-q PCR).From the findings of this study,during the middle risk period,one influent sample and three secondary effluents collected from waste water treatment plant 2,as well as two samples from Jinyintan Hospital wastewater system influent were SARS-Co V-2 RNA positive.One sludge sample collected from Guanggu Branch of Tongji Hospital,which was obtained during the low risk period,was also positive for SARS-Co V-2 RNA.These study findings demonstrate the significance of WBE in continuous surveillance of SARS-Co V-2 at the community level,even when the COVID-19 prevalence is low.Overall,this study can be used as an important reference for contingency management of wastewater treatment plants and COVID-19 prevention and control departments of Wuhan. | Lu Zhao Evans Atoni Raphael Nyaruaba Yao Du Huaiyu Zhang Oscar Donde Doudou Huang Shuqi Xiao Nanjie Ren Teng Ma Zhu Shu Zhiming Yuan Lei Tong Han Xia | 2022 | Journal of Environmental Sciences2022,34,2: | 1 |
| 11 | Short Sale Constraints, Disperse Pessimistic Beliefs and Market Ef- ficiency-Evidence from the Chinese Stock Market显示文摘 | Zhongkuang Zhao Shuqi Li Heping Xiong | 2014 | Economic Modelling2014,42,: | 1 |
| 12 | BOAT: Basic Oligonucleotide Alignment Tool显示文摘 | Zhao Shuqi Wang Jun | 2009 | BMC Genomics2009,10,: | 1 |
| 13 | Screening of Some Cotton Varieties for Allelopathic Potential on Clover Broomrape Germination显示文摘 | Ma Yongqing Lang Ming Dong Shuqi Shui Junfeng Zhao Junxin | 2012 | EN2012,,3: | 1 |
| 14 | Potassium thiocyanate additive for PEDOT:PSS layer to fabricate efficient tin-based perovskite solar cells显示文摘The commercialized poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate)(PEDOT:PSS)is usually used as hole transport layers(HTLs)in tin-based perovskite solar cells(TPSCs).However,the further development has been restricted due to the acidity that could damage the stability of TPSCs.Although the PEDOT:PSS solution can be diluted by water to decrease acidity and reduce the cost of device fabrication,the electrical conductivity will decrease obviously in diluted PEDOT:PSS solution.Herein,potassium thiocyanate(KSCN)is selected to regulate the properties of PEDOT:PSS HTLs from the diluted PEDOT:PSS aqueous solution by water with a volume ratio of 1:1 to prepare efficient TPSCs.The effect of KSCN addition on the structure and photoelectrical properties of PEDOT:PSS HTLs and TPSCs have been systematically studied.At the optimal KSCN concentration,the TPSCs based on KSCN-doped PEDOT:PSS HTLs(KSCN-PSCs)demonstrate the champion power conversion efficiency(PCE)of 8.39%,while the reference TPSCs only show a champioan PCE of 6.70%.The further analysis demonstrates that the KSCN additive increases the electrical conductivity of HTLs prepared by the diluted PEDOT:PSS solution,improves the microstructure of perovskite film,and inhibits carrier recombination in TPSCs,leading to the reduced hysteresis effect and enhanced PCE in KSCN-PSCs.This work gives a low-cost and practical strategy to develop a high-quality PEDOT:PSS HTLs from diluted PEDOT:PSS aqueous solution for efficient TPSCs. | Xu Zhao Shoudeng Zhong Shuqi Wang Shaozhen Li Sujuan Wu | 2023 | International Journal of Minerals,Metallurgy and Materials2023,30,12: | 0 |
| 15 | Stable epidermal electronic device with strain isolation induced by in situ Joule heating显示文摘Epidermal electronics play increasingly important roles in human-machine intetfaces.However,their efficient fabrication while maintaining device stability and reliability remains an unresolved challenge.Here,a facile in situ Joule heating method is proposed for fabricating stable epidermal electronics on a polyvinyl alcohol(PVA)substrate.Benefiting from the precise control of heating locations,the crystallization and enhanced rigidity of PVA are restricted to desired areas,leading to strain isolation of the active regions.As a result,the electronic device can be conformably attached to skin while showing negligible degradation in device performance during deformation.Based on this method,a flexible surface electromyography(sEMG)sensor with outstanding stability and highly comfortable wearability is demonstrated,showing high accuracy(91.83%)for human hand gesture recognition.These results imply that the fabrication method proposed in this research is a facile and reliable approach for the fabrication of epidermal electronics. | Zihao Wang Qifeng Lu Yizhang Xia Simin Feng Yixiang Shi Shuqi Wang Xianqing Yang Yangyong Zhao Fuqin Sun Tie Li Ting Zhang | 2021 | Microsystems & Nanoengineering2021,7,4: | 0 |
| 16 | Influence of moisture on the interface charge of oil-pressboard composite insulation under DC voltage显示文摘The distortion of the electric field in the oil–pressboard composite insulation caused by the accumulation of the interface charge is detrimental to both the insulation design and operation of converter transformers.The influence of moisture content on the surface charge accumulation of oil–pressboard insulation under DC voltage was studied in this study.In accordance with the Kerr electro-optic effect,the electric field strengths in transformer oil and the surface charge density were acquired after applying the positive and negative DC voltages in three oil–pressboard insulation models with different moisture content,respectively.The resistivities of the oil and pressboard in three models,namely Model 1#with 3.8–4.2 ppm moisture in oil and 0.35–0.37%moisture in pressboard,Model 2#with 7.6–7.9 ppm moisture in oil and 0.79–0.82%moisture in pressboard and Model 3#with 14.9–15.4 ppm moisture in oil and 1.39–1.42%moisture in pressboard,was also measured.The results indicate that:(i)as negative charges in oil accumulated on the pressboard surface in a much greater speed than the positive ones,the electric field in transformer oil under negative DC voltage decreases more rapidly with time than that under positive DC voltage;(ii)the increase of the moisture content in both oil and pressboard,under either positive or negative DC voltage,leads to the decrease of both the electric field strength in transformer oil and the charge density with time;and(iii)the increase of moisture content could not only decrease the resistivity of both oil and pressboard,but also the ratio of the resistivity between the pressboard and the oil.On the basis of the Maxwell–Wagner theory,the decrease of the ratio between the pressboard and oil could lead to the decrease of the interfacial charge density,leading to the slow transient process of the electric field in transformer oil under DC voltage. | Bo Qi Yanqiu Jiao Chunjia Gao Shuqi Zhang Xiaolin Zhao Chengrong Li | 2018 | High Voltage2018,3,1: | 0 |
| 17 | Decoupling of thermoelectric transport performance of Ag doped and Se alloyed tellurium induced by carrier mobility compensation显示文摘Alloying with Se is proved to be feasible to suppress the lattice thermal conductivity(κL)of tellurium by introducing multidimensional lattice defects.However,extra ionization impurity centers induced by Se alloying are harmful to the electric transport properties of the matrix.In this paper,we propose that the incorporation of Ag could successfully compensate the lost carrier mobility(μH)due to Se alloying through the regulation of microstructure,resulting in the higher power factor(PF)than that of samples without Ag.After composition optimization,theκLdecreased from 1.29 W m^(-1)K^(-1) of Te_(0.99)Sb_(0.01) to 1.05 W m^(-1)K^(-1) of Te_(0.94)Ag_(0.02)Se_(0.03)Sb_(0.01) at 350 K,while the PF remained unchanged or even slightly increased.Benefit from the synergistic effect of carrier mobility compensation and phonon scattering,a maximum z T of 0.91 at 573 K and an average z T of 0.57(between 298 and 573 K)are achieved in Te_(0.94)Ag_(0.02)Se_(0.03)Sb_(0.01).This work presents a new strategy for decoupling the thermal and electric parameters of Te-based thermoelectric materials. | Yue Wu Xiaofan Zhang Boyi Wang Jingxuan Liang Zipei Zhang Jiawei Yang Ximeng Dong Shuqi Zheng Huai-zhou Zhao | 2022 | Journal of Materials Science & Technology2022,,6: | 0 |
| 18 | ADVANCES IN EXPERIMENTAL APPROACHES FOR INVESTIGATING CELL AGGREGATE MECHANICS显示文摘Cells tend to form hierarchy structures in native tissues.Formation of cell aggregates in vitro such as cancer spheroids and embryonic bodies provides a unique means to study the mechanical properties and biological behaviors/functions of their counterparts in vivo.In this paper,we review state-of-the-art experimental approaches to assess the mechanical properties and mechanically-induced responses of cell aggregates in vitro.These approaches are classified into five categories according to loading modality,including micropipette aspiration,centrifugation,compression loading,substrate distention,and fluid shear loading.We discussed the advantages and disadvantages of each approach,and the potential biomedical applications.Understanding of the mechanical behavior of cell aggregates provides insights to physical interactions between cells and integrity of biological functions,which may enable mechanical intervention for diseases such as atheromatosis and cancer. | Wenjun Zhang Shuqi Wang Min Lin Yulong Hail Guiping Zhao Tian Jian Lu Feng Xu | 2012 | Acta Mechanica Solida Sinica2012,25,5: | 0 |
| 19 | Superelastic alloy based electrical interconnects for highly stretchable electronics显示文摘To achieve stretchable inorganic electronics,improving elastic stretchability of the electrical interconnects becomes a bottleneck needed to be addressed.Here,we propose a material of Ni-Ti superelastic alloy for the design and fabrication of deformable interconnects,whose intrinsic elastic property overcomes the low intrinsic elastic strain limit of conventional metals.The serpentine interconnect made by Ni-Ti alloy with an intrinsic elastic strain limit of~7.5%represents a much higher elastic stretchability than conventional Cu interconnect.The deformation behavior of the interconnect is systematically investigated through finite element analysis(FEA)simulations and experiments.The results reveal that the interconnect exhibits an elastic stretchability up to 196%,and its resistance only changes by 0.4%with 100% strain.Moreover,the potentials and challenges of other superelastic alloys as electrical interconnects are discussed.The proposed superelastic alloys fundamentally boost the stretchable properties of electrical interconnects,which would open up opportunities for flexible and stretchable electronics. | Yangyong Zhao Weifan Zhou Yixiang Shi Xianqing Yang Yuanyuan Bai Lianhui Li Shuqi Wang Tie Li Simin Feng Ting Zhang | 2022 | npj Flexible Electronics2022,6,1: | 0 |
| 20 | Multifunctional biomimetic tactile system via a stick-slip sensing strategy for human–machine interactions显示文摘A tactile sensor system enables natural interaction between humans and machines;this interaction is crucial for dexterous robotic hands,interactive entertainment,and other smart scenarios.However,the lack of sliding friction detection significantly limits the accuracy and scope of interactions due to the absence of sophisticated information,such as slippage,material and roughness of held objects.Here,inspired by the stick-slip phenomena in the sliding process,we have developed a multifunctional biomimetic tactile system based on the stick-slip sensing strategy,which is a universal method to detect slippage and estimate the surface properties of objects by sliding.This system consists of a flexible fingertip-inspired tactile sensor,a read-out circuit and a machinelearning module.Based on the stick-slip sensing strategy,our system was endowed with high recognition rates for slippage detection(100.0%),material classification(93.3%)and roughness discrimination(92.8%).Moreover,robotic hand manipulation,interactive games and object classification are demonstrated with this multifunctional system for comprehensive and promising human-machine interactions. | Yue Li Manjun Zhao Yadong Yan Luanxi He Yingyi Wang Zuoping Xiong Shuqi Wang Yuanyuan Bai Fuqin Sun Qifeng Lu Yu Wang Tie Li Ting Zhang | 2022 | npj Flexible Electronics2022,6,1: | 0 |