|
|
|
题名
|
作者
|
年代
|
出处
|
被引量
|
| 1 | Investigation on effect of semiconducting screen on space charge behaviour of polypropylene-based polymers for HVDC cables显示文摘High voltage direct current(HVDC)power transmission cable is critical for realising sustainability through renewable energy revolution.Eco-friendly thermoplastic polypropylene(PP)-based polymers/nanocomposites are regarded as promising candidates for replacing current thermoset crosslinked polyethylene(XLPE)cables.As an essential component of the extruded HVDC cable for improving conductor/insulation interface and suppressing charge injection to insulation at high DC electrical stresses,developing semiconducting(SC)screens that are compatible with PP-based insulation is of similar importance but has not been well studied yet.This work aims at designing PP-based semiconducting screens and investigating space charge behaviours of SC/PP/SC sandwich specimen to unfold the effect of semiconducting materials,bonding methods,applied DC electric field,and temperature on charge injection,accumulation,transportation,and dissipation in PP-based insulation.Although conventional thermal,mechanical,and low field electrical characterisations demonstrated that all of the developed semiconducting materials meet the performance criteria of commercial semiconducting materials,their space charge and local electric field distribution varied significantly at high DC fields.Compared with the traditional non-bonded configuration used at lab-scale,charge injection was enhanced in hot-pressed SC/PP/SC samples with tightly bonded interfaces,which better reflects the real situation in extruded cables.High temperature further intensified charge injections.Besides,our results also revealed that high temperature and electric field strongly influence charge mobilities and consequently their distribution and local electric field in PP-based insulations. | Mingyu Zhou Haitian Wang Xintong Ren George Chen Yi Luo Fan Yu | 2022 | High Voltage2022,7,5: | 1 |
| 2 | Carbon materials in electrocatalytic oxidation systems for the treatment of organic pollutants in wastewater:A review显示文摘Carbon materials are widely used as catalysts in electrocatalytic oxidative(EO)degradation of wastewater due to their large specific surface area and low cost.Carbon materials can also be used as catalyst carriers for EO reactions due to their ease of functionalization with other heteroatoms and metals/metal oxides.To improve the catalytic activity and current efficiency of carbon materials,modifying the structural and physicochemical properties of conventional carbon materials are common improvement method.This review briefly outlines the recent research progress of carbon materials in EO for organic pollutants degradation.It also discusses the modification strategies and corresponding electrocatalytic properties of various carbon materials(carbon nanomaterials and porous carbon materials),and explores the EO mechanism.Finally,some summaries of the remaining challenges and future developments of carbon materials in the field of electrocatalysis are given. | Xintong Duan Dezhang Ren Shichun Wang Mengjie Zhang Yaguang Sun Shujing Sun Zhibao Huo Nahui Zhang | 2023 | Carbon Resources Conversion2023,6,4: | 0 |
| 3 | NTP4 modulates miRNA accumulation via asymmetric modification of miRNA/miRNA duplex显示文摘Dear Editor.MicroRNAs(miRNAs)are endogenous small RNAs(sRNAs)that play crucial regulatory roles in gene expression.In plants,the transcribed primary miRNAs(pri-miRNAs)are sequentially processed by DICER-LIKE 1(DCL1)into precursor miRNAs(pre-miRNAs),and eventually miRNA/miRNA*duplexes(Wang et al.,2019).The methyltransferase HUA ENHANCER 1(HEN1)confers 2’-Omethylation on the 3’terminal ribose of each strand within the miRNA/miRNA*duplexes(Yu et al.,2005).Once methylated,miRNA duplexes are loaded onto ARGONAUTE1(AGO1),with one strand referred to as miRNA which is stabilized to form RNA-induced silencing complexes(RISCs),whereas the other strand becomes miRNA*that is eliminated and degraded. | Wenwen Kong Xianxin Dong Yongbing Ren Yuan Wang Xintong Xu Beixin Mo Yu Yu Xiaoyan Wang | 2021 | Science China(Life Sciences)2021,64,5: | 0 |
| 4 | Low-cost Free-standing ferroelectric polymer films with high polarization produced via pressing-and-folding显示文摘Ferroelectric polymer poly(vinylidene fluoride)(PVDF)shows excellent electro-activity and is promising for flexible electronic devices.However,the processing of PVDF into the favourable ferroelectric structure(β-phase)presents difficulties,while its copolymer with trifluoroethylene(PVDF-TrFE)can directly crystallize into β-phase,but shows limited thermal stability and high-cost processing.As a result,an easily implementable method,pressing-and-folding(P&F),was used to produce highly compatible blended films of PVDF and PVDF-TrFE without using any hazardous solvent or complex polymer processing equipment.Hot-pressed PVDF(molecular weight:530 kg/mol)and PVDF-TrFE(molar ratio:51/49)films were firstly stacked before undergoing P&F treatment.Compared to extrusion-blended films before and after P&F,the P&F stacked films showed isotropic crystalline structure of b-phase,as confirmed using X-ray diffraction and infrared spectroscopy.The ferroelectric remnant polarization of the P&F stacked films is 0.068 C/m^(2),surpassing pure PVDF-TrFE(0.062 C/m^(2))and the simulated value of remnant polarization of pure PVDF(~0.065 C/m^(2)).The above findings promise to provide inspirations for new processing strategy on PVDF-based functional polymers. | Nan Meng Xintong Ren Jiyue Wu Emiliano Bilotti Michael J.Reece Haixue Yan | 2022 | Journal of Materiomics2022,8,3: | 0 |