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Molecular Structure Tailoring of Organic Spacers for High‑Performance Ruddlesden–Popper Perovskite Solar Cells
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作者 Pengyun Liu Xuejin Li +6 位作者 Tonghui Cai Wei Xing Naitao Yang Hamidreza Arandiyan Zongping Shao Shaobin Wang Shaomin Liu 《Nano-Micro Letters》 SCIE EI CAS 2025年第2期314-357,共44页
Layer-structured Ruddlesden–Popper(RP)perovskites(RPPs)with decent stability have captured the imagination of the photovoltaic research community and bring hope for boosting the development of perovskite solar cell(P... Layer-structured Ruddlesden–Popper(RP)perovskites(RPPs)with decent stability have captured the imagination of the photovoltaic research community and bring hope for boosting the development of perovskite solar cell(PSC)technology.However,two-dimensional(2D)or quasi-2D RP PSCs are encountered with some challenges of the large exciton binding energy,blocked charge transport and poor film quality,which restrict their photovoltaic performance.Fortunately,these issues can be readily resolved by rationally designing spacer cations of RPPs.This review mainly focuses on how to design the molecular structures of organic spacers and aims to endow RPPs with outstanding photovoltaic applications.We firstly elucidated the important roles of organic spacers in impacting crystallization kinetics,charge transporting ability and stability of RPPs.Then we brought three aspects to attention for designing organic spacers.Finally,we presented the specific molecular structure design strategies for organic spacers of RPPs aiming to improve photovoltaic performance of RP PSCs.These proposed strategies in this review will provide new avenues to develop novel organic spacers for RPPs and advance the development of RPP photovoltaic technology for future applications. 展开更多
关键词 Ruddlesden-Popper perovskites Low-dimensional perovskite solar cells Organic spacers Molecular structure Design strategies
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Boosting MA-based two-dimensional Ruddlesden-Popper perovskite solar cells by incorporating a binary spacer 被引量:1
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作者 Xue Dong Yinhao Tang +10 位作者 Yiqun Li Xin Li Yuzhen Zhao Wenqi Song Fangmin Wang Shudong Xu Yipeng Zhou Chenxin Ran Zongcheng Miao Lin Song Zhongbin Wu 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第8期348-356,I0008,共10页
Two-dimensional Ruddlesden-Popper(2DRP)perovskite exhibits excellent stability in perovskite solar cells(PSCs)due to introducing hydrophobic long-chain organic spacers.However,the poor charge transporting property of ... Two-dimensional Ruddlesden-Popper(2DRP)perovskite exhibits excellent stability in perovskite solar cells(PSCs)due to introducing hydrophobic long-chain organic spacers.However,the poor charge transporting property of bulky organic cation spacers limits the performance of 2DRP PSCs.Inspired by the Asite cation alloying strategy in 3D perovskites,2DRP perovskites with a binary spacer can promote charge transporting compared to the unary spacer counterparts.Herein,the superior MA-based 2DRP perovskite films with a binary spacer,including 3-guanidinopropanoic acid(GPA)and 4-fluorophenethylamine(FPEA)are realized.These films(GPA_(0.85)FPEA_(0.15))_(2)MA_(4)Pb_5I_(16)show good morphology,large grain size,decreased trap state density,and preferential orientation of the as-prepared film.Accordingly,the present 2DRP-based PSC with the binary spacer achieves a remarkable efficiency of 18.37%with a V_(OC)of1.15 V,a J_(SC)of 20.13 mA cm^(-2),and an FF of 79.23%.To our knowledge,the PCE value should be the highest for binary spacer MA-based 2DRP(n≤5)PSCs to date.Importantly,owing to the hydrophobic fluorine group of FPEA and the enhanced interlayer interaction by FPEA,the unencapsulated 2DRP PSCs based on binary spacers exhibit much excellent humidity stability and thermal stability than the unary spacer counterparts. 展开更多
关键词 Perovskite solar cells Two-dimensional Ruddlesden-Popper perovskite Binary spacers Stability
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A preliminary analysis of phylogenetic relationships of Arundinaria and related genera based on nucleotide sequences of nrDNA (ITS region) and cpDNA (trnL-F intergenic spacer) 被引量:5
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作者 ZHUGEQiang DINGYu-long +3 位作者 XUChen ZOUHui-yu HUANGMin-ren WANGMing-xiu 《Journal of Forestry Research》 SCIE CAS CSCD 2005年第1期5-8,i001,共5页
Phylogenetic relationships of Arundinaria and related genera (Pleioblastus, Pseudosasa, Oligostachyum, Bashania, Clavinodum, etc.) were assessed by analyzing the sequences of the nrDNA internal transcribed spacer (ITS... Phylogenetic relationships of Arundinaria and related genera (Pleioblastus, Pseudosasa, Oligostachyum, Bashania, Clavinodum, etc.) were assessed by analyzing the sequences of the nrDNA internal transcribed spacer (ITS) and the cpDNA trnL-F intergenic spacer (IGS). Comparison with trnL-F IGS sequence, the ITS region provided the higher number of parsimony informative characters, and the interspecific variation of the ITS sequence was higher than that of the trnL-F IGS sequence.The tree obtained by combining both sets of data showed that the species sampled in Arundinaria and the related genera were monophyletic and divided into two clades. The relationships and positioning of all the taxa surveryed (including A. oleosa, A. hsienchuensis, A. chino, A. amara, A. yixingensis, A. amabilis, A. fortunei, A. pygmaea, A. gramineus, A. fargesii, A. faberi, A. hupehense, Pseudosasa japonica cv. Tsutsumiana, P. japonica and Brachystachyum densiflorum) were also discussed. The results from the sequences were broadly consistent with morphological characters, appearing all these taxa sampled belong to the genus of Arundinaria. The topologies of the trees generated from individual data and the combined data were similar. 展开更多
关键词 Arundinaria Internal transcribed spacers (ITS) sequences trnL-F intergenic spacer (IGS) sequences Phylogenetic relationships
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Development and Evaluation of a New Nanometer Based Spacer NMS-I 被引量:2
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作者 Cheng Rongchao Wang Ruihe Cao Huilian Bu Yuhuan Cheng Yuanfang 《Petroleum Science》 SCIE CAS CSCD 2007年第1期49-54,共6页
In view of the inadequate cementing quality in the cementation for long isolation intervals ofoil and gas wells, and considering the field practice in Tarim Oilfield, a nanometer material LC-212 was introduced as the ... In view of the inadequate cementing quality in the cementation for long isolation intervals ofoil and gas wells, and considering the field practice in Tarim Oilfield, a nanometer material LC-212 was introduced as the base stock to experimentally develop a new spacer system NMS-I, in combination with other materials, including a chemical gel plugging agent, carboxymethyl cellulose and barite. Experimental results indicated that the system had a wide adjustable range of density, good rheological property, static stability and compatibility with cement slurry. It also showed no flocculating or thickening effect on the water-base drilling fluid and low-density cement system. Meanwhile, the capacity of lost circulation control and the influence of the spacer on the second interfacial cementing strength were evaluated by a self-made lost circulation simulator and shearing test facility. The results showed that the spacer had favorable plugging and flushing effect, and the second interfacial cementing strength can be greatly improved. Moreover, based on the experiments, the mechanisms of spacer function were analyzed. The results obtained from the investigation offer a novel approach to resolving some practical problems in cementing jobs. 展开更多
关键词 CEMENTING spacer nanometer material lost circulation control mechanism of spacer function
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Effects of Flexible Conjugation-Break Spacers of Non-Conjugated Polymer Acceptors on Photovoltaic and Mechanical Properties of All-Polymer Solar Cells 被引量:3
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作者 Qiaonan Chen Yung Hee Han +12 位作者 Leandro R.Franco Cleber F.N.Marchiori Zewdneh Genene CMoyses Araujo Jin-Woo Lee Tan Ngoc-Lan Phan Jingnan Wu Donghong Yu Dong Jun Kim Taek-Soo Kim Lintao Hou Bumjoon J.Kim Ergang Wang 《Nano-Micro Letters》 SCIE EI CAS CSCD 2022年第10期164-177,共14页
All-polymer solar cells(all-PSCs)possess attractive merits including superior thermal stability and mechanical flexibility for large-area roll-to-roll processing.Introducing flexible conjugation-break spacers(FCBSs)in... All-polymer solar cells(all-PSCs)possess attractive merits including superior thermal stability and mechanical flexibility for large-area roll-to-roll processing.Introducing flexible conjugation-break spacers(FCBSs)into backbones of polymer donor(P_(D))or polymer acceptor(P_(A))has been demonstrated as an efficient approach to enhance both the photovoltaic(PV)and mechanical properties of the all-PSCs.However,length dependency of FCBS on certain all-PSC related properties has not been systematically explored.In this regard,we report a series of new non-conjugated P_(A)s by incorporating FCBS with various lengths(2,4,and 8 carbon atoms in thioalkyl segments).Unlike com-mon studies on so-called side-chain engineering,where longer side chains would lead to better solubility of those resulting polymers,in this work,we observe that the solubilities and the resulting photovoltaic/mechanical properties are optimized by a proper FCBS length(i.e.,C2)in P_(A) named PYTS-C2.Its all-PSC achieves a high efficiency of 11.37%,and excellent mechanical robustness with a crack onset strain of 12.39%,significantly superior to those of the other P_(A)s.These results firstly demonstrate the effects of FCBS lengths on the PV performance and mechanical properties of the all-PSCs,providing an effective strategy to fine-tune the structures of P_(A)s for highly efficient and mechanically robust PSCs. 展开更多
关键词 All-polymer solar cells Flexible conjugation-break spacers Mechanical robustness Polymer acceptors Stretchability
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Influence of spacer insulator material temperature characteristics on its electric properties 被引量:2
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作者 Yuyi Wu Chengyu Wang +1 位作者 Yun Chen Boyuan Cui 《Global Energy Interconnection》 2019年第1期71-77,共7页
Spacer insulators are important insulating component of gas insulated switchgear(GIS). In order to analyze the influence of spacer insulator materials temperature characteristics on the electric performance, we tested... Spacer insulators are important insulating component of gas insulated switchgear(GIS). In order to analyze the influence of spacer insulator materials temperature characteristics on the electric performance, we tested the temperature distribution under work condition and the temperature characteristics of the material's relative permittivity. Then established a spacer insulator simulation model in finite element numerical simulation software to calculate its temperature and electric field. Using the temperature test results as a reference to verify the temperature calculation, and in order to analyze changes of the electric field along the surface of the spacer insulator, the temperature characteristics of relative permittivity have to be considered. Through the experimental research and simulation analysis, we found that the temperature characteristics of the spacer insulator materials have great impacts on the spacer insulator performance. When the temperature increases, the material relative permittivity also increases. In the low-temperature region of spacer insulator, the electric field intensity along the surface increases, so the electrical performance deteriorates. The conclusion of this paper can provide an important reference for further research about spacer insulator's working performance analysis. 展开更多
关键词 spacer INSULATOR EPOXY RESIN formulations Temperature CHARACTERISTICS FINITE element simulation
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Recent Progress of Layered Perovskite Solar Cells Incorporating Aromatic Spacers 被引量:2
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作者 Yuping Gao Xiyue Dong Yongsheng Liu 《Nano-Micro Letters》 SCIE EI CAS CSCD 2023年第10期163-181,共19页
Layered two dimensional(2D) or quasi-2D perovskites are emerging photovoltaic materials due to their superior environment and structure stability in comparison with their 3D counterparts. The typical 2D perovskites ca... Layered two dimensional(2D) or quasi-2D perovskites are emerging photovoltaic materials due to their superior environment and structure stability in comparison with their 3D counterparts. The typical 2D perovskites can be obtained by cutting 3D perovskites along < 100 > orientation by incorporation of bulky organic spacers, which play a key role in the performance of 2D perovskite solar cells(PSCs). Compared with aliphatic spacers, aromatic spacers with high dielectric constant have the potential to decrease the dielectric and quantum confinement effect of 2D perovskites, promote efficient charge transport and reduce the exciton binding energy, all of which are beneficial for the photovoltaic performance of 2D PSCs. In this review, we aim to provide useful guidelines for the design of aromatic spacers for 2D perovskites. We systematically reviewed the recent progress of aromatic spacers used in 2D PSCs. Finally, we propose the possible design strategies for aromatic spacers that may lead to more efficient and stable 2D PSCs. 展开更多
关键词 Layered perovskite solar cells Aromatic spacers Quantum and dielectric confinement effects Charge transport Efficiency and stability
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Optimization of ambipolar current and analog/RF performance for T-shaped tunnel field-effect transistor with gate dielectric spacer
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作者 Ru Han Hai-Chao Zhang +1 位作者 Dang-Hui Wang Cui Li 《Chinese Physics B》 SCIE EI CAS CSCD 2019年第1期656-662,共7页
A new T-shaped tunnel field-effect transistor(TTFET) with gate dielectric spacer(GDS) structure is proposed in this paper. To further studied the effects of GDS structure on the TTFET, detailed device characteristics ... A new T-shaped tunnel field-effect transistor(TTFET) with gate dielectric spacer(GDS) structure is proposed in this paper. To further studied the effects of GDS structure on the TTFET, detailed device characteristics such as current-voltage relationships, energy band diagrams, band-to-band tunneling(BTBT) rate and the magnitude of the electric field are investigated by using TCAD simulation. It is found that compared with conventional TTFET and TTFET with gate-drain overlap(GDO) structure, GDS-TTFET not only has the minimum ambipolar current but also can suppress the ambipolar current under a more extensive bias range. Furthermore, the analog/RF performances of GDS-TTFET are also investigated in terms of transconductance, gate-source capacitance, gate-drain capacitance, cutoff frequency, and gain bandwidth production. By inserting a low-κ spacer layer between the gate electrode and the gate dielectric, the GDS structure can effectively reduce parasitic capacitances between the gate and the source/drain, which leads to better performance in term of cutoff frequency and gain bandwidth production. Finally, the thickness of the gate dielectric spacer is optimized for better ambipolar current suppression and improved analog/RF performance. 展开更多
关键词 tunneling field effect TRANSISTOR T-SHAPED TUNNEL FIELD-EFFECT TRANSISTOR gate dielectric spacer ambipolar current analog/RF performance
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Effects of spacer layers on magnetic properties and exchange couplings of Nd-Fe-B/Nd-Ce-Fe-B multilayer films
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作者 孙亚超 朱明刚 +4 位作者 刘伟 韩瑞 张文臣 李岩峰 李卫 《Chinese Physics B》 SCIE EI CAS CSCD 2017年第10期438-441,共4页
The influences of the spacer-layer Ta on the structures and magnetic properties of NdFeB/NdCeFeB multilayer films are investigated via DC sputtering under an Ar pressure of 1.2 Pa. An obvious (00l) texture of the ha... The influences of the spacer-layer Ta on the structures and magnetic properties of NdFeB/NdCeFeB multilayer films are investigated via DC sputtering under an Ar pressure of 1.2 Pa. An obvious (00l) texture of the hard phase is observed in each of the films, which indicates that the main phase of the film does not significantly change with Ta spacer-layer thickness. As a result, both the remanence and the saturation magnetization of the magnet first increase and then decrease, and the maximum values of 4π Mr and Hcj are 10.4 kGs (1 Gs=10^-4 T) and 15.0 kOe (1 Oe=79.5775 A·m^-1) for the film with a 2-nm-thick Ta spacer-layer, respectively, where the crystalline structures are columnar shape particles. The measured relationship between irreversible portion D (H)=-△ Mirr/2Mr and H indicates that the nucleation field of the film decreases with spacer layer thickness increasing, owing to slightly disordered grains near the interface between different magnetic layers. 展开更多
关键词 permanent magnets multilayer films spacer layer IRREVERSIBLE
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Spacer layer thickness fluctuation scattering in a modulation-doped Al_xGa_(1-x)As/GaAs/Al_xGa_(1-x)As quantum well
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作者 谷承艳 刘贵鹏 +6 位作者 时凯 宋亚峰 李成明 刘祥林 杨少延 朱勤生 王占国 《Chinese Physics B》 SCIE EI CAS CSCD 2012年第10期435-438,共4页
We theoretically study the influence of spacer layer thickness fluctuation(SLTF) on the mobility of a twodimensional electron gas(2DEG) in the modulation-doped Al x Ga 1 x As/GaAs/Al x Ga 1 x As quantum well.The d... We theoretically study the influence of spacer layer thickness fluctuation(SLTF) on the mobility of a twodimensional electron gas(2DEG) in the modulation-doped Al x Ga 1 x As/GaAs/Al x Ga 1 x As quantum well.The dependence of the mobility limited by SLTF scattering on spacer layer thickness and donor density are obtained.The results show that SLTF scattering is an important scattering mechanism for the quantum well structure with a thick well layer. 展开更多
关键词 spacer layer thickness fluctuation scattering interface roughness scattering 2DEG mobility
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Effects of gate-buffer combined with a p-type spacer structure on silicon carbide metal semiconductor field-effect transistors
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作者 Song Kun Chai Chang-Chun +3 位作者 Yang Yin-Tang Chen Bin Zhang Xian-Jun Ma Zhen-Yang 《Chinese Physics B》 SCIE EI CAS CSCD 2012年第1期426-432,共7页
An improved structure of silicon carbide metal-semiconductor field-effect transistors (MESFET) is proposed for high power microwave applications. Numerical models for the physical and electrical mechanisms of the de... An improved structure of silicon carbide metal-semiconductor field-effect transistors (MESFET) is proposed for high power microwave applications. Numerical models for the physical and electrical mechanisms of the device are presented, and the static and dynamic electrical performances are analysed. By comparison with the conventional structure, the proposed structure exhibits a superior frequency response while possessing better DC characteristics. A p-type spacer layer, inserted between the oxide and the channel, is shown to suppress the surface trap effect and improve the distribution of the electric field at the gate edge. Meanwhile, a lightly doped n-type buffer layer under the gate reduces depletion in the channel, resulting in an increase in the output current and a reduction in the gate-capacitance. The structural parameter dependences of the device performance are discussed, and an optimized design is obtained. The results show that the maximum saturation current density of 325 mA/mm is yielded, compared with 182 mA/mm for conventional MESFETs under the condition that the breakdown voltage of the proposed MESFET is larger than that of the conventional MESFET, leading to an increase of 79% in the output power density. In addition, improvements of 27% cut-off frequency and 28% maximum oscillation frequency are achieved compared with a conventional MESFET, respectively. 展开更多
关键词 silicon carbide metal-semiconductor field-effect transistor p-type spacer gate-buffer
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TiNi Shape Memory Alloy Foams Synthesized by Spacer Sintering and their Properties 被引量:1
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作者 P D Hodgson 《材料科学与工程学报》 CAS CSCD 北大核心 2007年第6期892-894,898,共4页
Titanium(Ti)and nickel(Ni)elemental powders were blended by ball milling and the ball milled powders were employed to fabricate TiNi shape memory alloy(SMA)foams by spacer sintering.Effect of ball milling time on phas... Titanium(Ti)and nickel(Ni)elemental powders were blended by ball milling and the ball milled powders were employed to fabricate TiNi shape memory alloy(SMA)foams by spacer sintering.Effect of ball milling time on phase constitutes of the sintered TiNi alloy foams was studied by X-ray diffraction(XRD)analysis.Scanning electron microscopy(SEM)was used to characterize the porous structure,and compressive tests were carried out to evaluate the mechanical properties of the foams.Results indicate that porosities of the TiNi alloy foams can be controlled by using the spacer sintering method,and the porosities show a significant effect on the mechanical properties and shape memory effect(SME). 展开更多
关键词 间隔烧结 合成 镍钛合金 形状记忆合金 金属泡沫
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Experimental and numerical simulation of air-water two-phase flow in the rod bundle with grid spacer
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作者 WANGXiao-Jun CHENBing-De HUANGYan-Ping 《Nuclear Science and Techniques》 SCIE CAS CSCD 2004年第1期46-52,共7页
Experimental and numerical simulation were carried out on vertically upward air-water two-phase flow in the rod bundle with grid spacer. The related numerical simulation has been performed by using the Computational F... Experimental and numerical simulation were carried out on vertically upward air-water two-phase flow in the rod bundle with grid spacer. The related numerical simulation has been performed by using the Computational Fluid Dynamics code-CFX4.2, in which lateral interfacial effects based on a two-fluid model are accounted for. This model has been used to evaluate the velocity fields of gas and liquid phases, as well as phase distribution between elements in rod bundle by simulating 1/4 zone of experimental model, and mixing vanes of spacer in this area. Fur- thermore, this model has been used to predict the effects of spacer on flow and pressure drop along the rod bundle. The calculation results show that the mixing vane has significant influence on axial and lateral velocity. In order to obtain some experimental data to verify the numerical solutions, a series of tests, using a specially designed 3×3 rod bundle test section with AFA-2G structure spacer have been performed. An optical probe was used to measure local void fractions. At the same time, the pressure loss has been measured. A comparison between the calculated void pro- file and pressure loss and the measured results shows that the predicted void profiles are consistent at low gas appar- ent velocity. This research shows that the code CFX4.2 can be used to describe the 3-D air-water two-phase flow in the rod bundle channel with grid spacer. 展开更多
关键词 数值模拟 气液两相流 盘条 网分隔机 流体动力学 燃料组件
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超距间隔织物及其复合材料应用研究进展
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作者 赵颖 姜亚明 《针织工业》 北大核心 2025年第3期78-83,共6页
对目前国内外超距间隔织物及其复合材料的研究和应用进行综述。首先简要介绍传统间隔织物和超距间隔织物的结构特点,并结合研究现状着重对针织和梭织结构超距间隔织物的优缺点及研究方向进行概括。然后,在此基础上列举超距间隔织物复合... 对目前国内外超距间隔织物及其复合材料的研究和应用进行综述。首先简要介绍传统间隔织物和超距间隔织物的结构特点,并结合研究现状着重对针织和梭织结构超距间隔织物的优缺点及研究方向进行概括。然后,在此基础上列举超距间隔织物复合材料在家居、体育娱乐和交通建筑等领域的应用。最后,总结和展望了超距间隔织物复合材料在防护、保温、建筑和交通运输产业应用的优势,以期在更多领域深入扩大应用。 展开更多
关键词 间隔织物 超距 织造技术 复合材料 力学性能 发展趋势
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间隔性天窗启闭对网壳结构风荷载影响规律的试验研究
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作者 李宇青 王昕 +2 位作者 刘小兵 陈安杰 崔会敏 《振动与冲击》 北大核心 2025年第6期176-183,共8页
大跨柱面网壳结构由于质量轻、柔度大,对风荷载比较敏感,在顶部开启间隔性天窗对结构的抗风性能具有较大的影响。以某大跨度柱面网壳结构为研究对象,通过刚性模型测压风洞试验方法,分析了在不同风向角下顶部间隔性天窗启闭对结构的体型... 大跨柱面网壳结构由于质量轻、柔度大,对风荷载比较敏感,在顶部开启间隔性天窗对结构的抗风性能具有较大的影响。以某大跨度柱面网壳结构为研究对象,通过刚性模型测压风洞试验方法,分析了在不同风向角下顶部间隔性天窗启闭对结构的体型系数、整体力系数以及极值风压系数的影响规律。结果表明:天窗的启闭对结构外表面风荷载影响整体较小,对内表面风荷载的影响比较明显。内表面风荷载的变化是导致结构风荷载随天窗启闭变化的主要原因。在跨向来流下,与天窗关闭时相比,当天窗开启时,结构的跨向整体力更大,增大幅度约为34%,这种“增大效应”随着来流偏离跨向逐渐减弱,当偏离跨向60°时基本消失;结构的竖向整体力更小,减小幅度约为47%,这种“减小效应”随着来流偏离跨向逐渐减弱,但即使偏离90°(纵向来流)时仍存在。与天窗关闭时相比,天窗开启时结构的正向极值风压力增大,大部分区域的负向极值风吸力减小,但天窗局部区域的负向极值风吸力有所增大。 展开更多
关键词 大跨柱面网壳结构 间隔性天窗 风洞试验 整体力系数 极值风压系数
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基于ITS2和psbA-trnH序列鉴别五味子和华中五味子
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作者 杨楚楚 任广喜 +6 位作者 齐玉鑫 徐庆一 田俊强 程豪杰 陈晓洲 姜丹 刘春生 《中国现代中药》 2025年第1期43-51,共9页
目的:基于核内转录间隔区2(ITS2)和psbA-trnH序列,运用DNA条形码技术对五味子和华中五味子进行序列比对分析,建立快速、准确的分子鉴定方法,筛选最佳DNA条形码序列用于鉴别五味子和华中五味子真伪。方法:以五味子和华中五味子为材料,利... 目的:基于核内转录间隔区2(ITS2)和psbA-trnH序列,运用DNA条形码技术对五味子和华中五味子进行序列比对分析,建立快速、准确的分子鉴定方法,筛选最佳DNA条形码序列用于鉴别五味子和华中五味子真伪。方法:以五味子和华中五味子为材料,利用DNA提取试剂盒,分别提取五味子和华中五味子的总DNA,对ITS2序列和psbA-trnH序列进行聚合酶链式反应扩增及测序分析,使用DNAMAN 6.0软件统计其片段长度及变异位点个数,使用MEGA 5.0软件对数据进行分析比对,计算Kimura 2-parameter遗传距离,通过数据库预测二级结构,并利用邻接法建立系统发育树进行分析。结果:五味子和华中五味子ITS2序列片段长度为231 bp,鉴别位点为腺嘌呤(A)-胸腺嘧啶(T)、鸟嘌呤(G)-T、T-A;在psbA-trnH序列中,存在7个稳定的鉴别位点,分别为GA、T-G、胞嘧啶(C)-A、T-A、缺失-T、A-T、G-T,五味子和华中五味子ITS2序列二级结构存在明显差异,能将两者进行区分。结论:ITS2和psbA-trnH条形码均可以用于区分五味子和华中五味子,但psbA-trnH条形码种内遗传更稳定,种间鉴别位点更多,研究为五味子和华中五味子的快速、准确鉴定和用药安全提供科学依据。 展开更多
关键词 五味子 华中五味子 DNA条形码 内转录间隔区2序列 叶绿体基因间隔区序列
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异形针织间隔结构界面太阳能蒸汽发生器的制备及其性能
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作者 齐路漫 孟家光 +1 位作者 余灵婕 支超 《纺织学报》 北大核心 2025年第2期122-129,共8页
为进一步提升界面太阳能蒸汽发生器的蒸发性能,基于针织间隔织物的可设计性,使用石墨烯/碳纳米管包覆涤纶复合纤维编织光热蒸发层,涤纶长丝编织漂浮层,利用二维编织技术制备的间隔纱将光热蒸发层和漂浮层连接,制备出一种自漂浮纬编异形... 为进一步提升界面太阳能蒸汽发生器的蒸发性能,基于针织间隔织物的可设计性,使用石墨烯/碳纳米管包覆涤纶复合纤维编织光热蒸发层,涤纶长丝编织漂浮层,利用二维编织技术制备的间隔纱将光热蒸发层和漂浮层连接,制备出一种自漂浮纬编异形间隔织物界面太阳能蒸汽发生器,并对其输水性能、光吸收性能、蒸发性能、废水处理性能等进行了研究。结果表明:间隔纱的液体传输速度为1 cm/min,能够实现水分的快速传输;制备的蒸发器可以在无光照条件下漂浮900 s,蒸发器在紫外-可见-近红外光区域的光吸收率高达96%,蒸发速率在1 kW/m^(2)光照条件下为1.80 kg/(m^(2)·h),蒸发效率高达95.73%,即使在质量分数为15%的氯化钠溶液中蒸发效率依然可以达到1.51 kg/(m^(2)·h)。 展开更多
关键词 间隔织物 光热转化 太阳能蒸发 海水淡化 废水净化
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抗静电经编间隔复合材料设计与性能研究
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作者 郑姿辰 王梦瑶 +1 位作者 唐宁 王金凤 《针织工业》 北大核心 2025年第2期13-17,共5页
文中以3种不同组织结构的经编间隔织物作为基布进行抗静电缓冲材料的开发研究,采用石墨烯复合水性导电涂料和水性聚氨酯制备不同质量配比(1∶1、1∶2、1∶3)的抗静电涂料,然后通过丝网印刷对3种经编间隔织物分别进行涂层整理,进而制备... 文中以3种不同组织结构的经编间隔织物作为基布进行抗静电缓冲材料的开发研究,采用石墨烯复合水性导电涂料和水性聚氨酯制备不同质量配比(1∶1、1∶2、1∶3)的抗静电涂料,然后通过丝网印刷对3种经编间隔织物分别进行涂层整理,进而制备抗静电缓冲织物,并将制得的试样进行基本力学性能、抗静电性能测试。根据综合效果确定1#试样、溶液配比为1∶1时为最佳工艺。研究为后续以经编间隔织物为基材开发抗静电防护复合材料提供参考价值,用以生产石油、化工和军工等领域防护用产品。 展开更多
关键词 经编间隔织物 复合材料 涂层 溶液配比 抗静电性能
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玄武岩/聚酰亚胺三维间隔机织物的参数化建模及高温环境传热数值模拟
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作者 李慧敏 刘淑强 +2 位作者 杜琳琳 张曼 吴改红 《纺织学报》 北大核心 2025年第1期87-94,共8页
为突破实验条件的限制研究高温环境下三维间隔机织物的传热机制和传热过程,以玄武岩/聚酰亚胺三维间隔机织物为研究对象,对其三维间隔结构进行参数化建模,并确定控制方程以及边界条件。利用有限元分析方法对该织物进行高温环境下的传热... 为突破实验条件的限制研究高温环境下三维间隔机织物的传热机制和传热过程,以玄武岩/聚酰亚胺三维间隔机织物为研究对象,对其三维间隔结构进行参数化建模,并确定控制方程以及边界条件。利用有限元分析方法对该织物进行高温环境下的传热过程数值模拟,通过实验对比验证模型有效性,探究了玄武岩/聚酰亚胺三维间隔机织物的间隔高度以及间隔跨距对其传热性能的影响。结果发现:相较于间隔跨距,间隔高度对三维间隔机织物传热性能的影响更大,传热平衡状态时织物背面域点探针温度相差11.4℃;且在三维间隔机织物内部,同一时刻下同一水平面上的间隔纱温度略低于空气域温度。 展开更多
关键词 三维间隔机织物 玄武岩纤维 聚酰亚胺纤维 高性能纤维 高温环境 传热 数值模拟
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加工及测试温度对间隔织物增强复合板材力学性能的影响
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作者 李杉杉 田飞 《纺织科技进展》 2025年第1期22-26,43,共6页
为提高复合板材加工效率,研究不同固化温度、不同测试温度下复合板材的性能。以超高分子量聚乙烯长丝为原料织造机织间隔织物,通过泡沫填充、树脂复合制作间隔织物复合板材,在不同的温度下完成树脂固化,探讨固化温度对间隔织物增强复合... 为提高复合板材加工效率,研究不同固化温度、不同测试温度下复合板材的性能。以超高分子量聚乙烯长丝为原料织造机织间隔织物,通过泡沫填充、树脂复合制作间隔织物复合板材,在不同的温度下完成树脂固化,探讨固化温度对间隔织物增强复合板材力学性能的影响,在不同的温度下对复合板材进行力学性能测试,探究测试温度对复合板材的力学性能的影响。结果表明,随着固化温度的升高,完全固化的时间随之降低,但与常温固化力学性能数据差异不显著。在高温下,复合板材的平压性能和弯曲性能没有受到显著影响,但使经纬向侧压性能下降,下降幅度分别高达69.59%和60.08%,经纬向平均下降幅度为64.84%;在低温下,复合板材的平压性能、经纬向侧压性能没有受到显著影响,但使弯曲性能大幅提高,提高幅度达61.67%。 展开更多
关键词 超高分子量聚乙烯 间隔织物 复合板材 加工温度 力学性能
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