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氯乙烯光催化氟化联合合成HFC-152a和HCFC-142b后处理工艺的研究
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作者 刘岭梅 《中国氯碱》 CAS 2024年第6期18-20,24,共4页
根据氯乙烯光催化氟化联合合成HFC-152a和HCFC-142b反应产物的特点,设计了工艺成熟、流程合理的后处理工艺,并提出了各工序的技术要点。
关键词 氯乙烯 hfc-152A HCFC-142b 后处理工艺
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颈椎前路Hybrid手术和颈椎后路单开门椎管扩大成形术治疗多节段脊髓型颈椎病临床疗效分析
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作者 王理想 李春根 +5 位作者 柳根哲 赵子义 赵思浩 陈超 祝永刚 李伟 《吉林大学学报(医学版)》 CAS CSCD 北大核心 2024年第1期228-235,共8页
目的:分析颈椎前路Hybrid手术和颈椎后路单开门椎管扩大成形术(EODL)治疗多节段脊髓型颈椎病的疗效,探讨多节段脊髓型颈椎病患者手术方式的选择。方法:对2017年7月—2020年7月在首都医科大学附属北京中医医院手术治疗的70例多节段脊髓... 目的:分析颈椎前路Hybrid手术和颈椎后路单开门椎管扩大成形术(EODL)治疗多节段脊髓型颈椎病的疗效,探讨多节段脊髓型颈椎病患者手术方式的选择。方法:对2017年7月—2020年7月在首都医科大学附属北京中医医院手术治疗的70例多节段脊髓型颈椎病患者进行回顾性分析,根据手术方式不同,分为前路组35例和后路组35例,前路组患者行Hybrid手术[颈椎前路椎间盘切除融合术(ACDF)联合人工颈椎间盘置换术(ACDR)],后路组患者行EODL。记录2组患者住院时间、手术时间、术中出血量和术后引流量,通过日本骨科协会(JOA)评分、JOA改善率、颈椎残障功能指数(NDI)、疼痛视觉模拟评分(VAS)和术后满意度评分进行疗效评价,统计2组患者术后并发症发生情况。结果:与后路组比较,前路组患者术中出血量、术后引流量、住院时间和手术时间均明显减少(P<0.01),术前各项评分差异无统计学意义(P>0.05)。末次随访时,与后路组比较,前路组患者JOA评分和JOA改善率明显升高(P<0.01),NDI评分和VAS评分明显降低(P<0.01)。与术前比较,末次随访时2组患者JOA评分明显升高(P<0.01),NDI和VAS评分均明显降低(P<0.01)。按术后满意度评分评价,2组患者术后满意度均较高。2组患者术后并发症发生率比较差异无统计学意义(P>0.05)。结论:颈椎前路Hybrid手术和EODL在治疗多节段脊髓型颈椎病方面均取得了较为满意的疗效。Hybrid手术具有出血量少和手术时间短等优点,临床上应根据患者实际情况选择最适宜的术式。 展开更多
关键词 脊髓型颈椎病 颈椎后路 椎管减压 颈椎前路手术 hybrid手术
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C/C-HfC复合材料的抗烧蚀性能
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作者 郑鹏 李红 +3 位作者 杨敏 姚彧敏 任慕苏 孙晋良 《材料工程》 EI CAS CSCD 北大核心 2024年第5期171-178,共8页
以无机铪溶液为前驱体,采用化学气相渗透法(CVI)和前驱体浸渍裂解法(PIP)制备密度为2.14 g/cm^(3)的C/C-HfC复合材料,分析其微观结构和组成,测试材料的抗烧蚀性能。结果表明:HfC陶瓷均匀地分散于基体的孔隙中,且与基体结合紧密。引入Hf... 以无机铪溶液为前驱体,采用化学气相渗透法(CVI)和前驱体浸渍裂解法(PIP)制备密度为2.14 g/cm^(3)的C/C-HfC复合材料,分析其微观结构和组成,测试材料的抗烧蚀性能。结果表明:HfC陶瓷均匀地分散于基体的孔隙中,且与基体结合紧密。引入HfC陶瓷可以显著增强C/C复合材料的抗烧蚀性能。在相同的热流条件下,烧蚀时间为120 s时,C/C-HfC复合材料的线烧蚀率为6.20×10^(-2)mm·s^(-1),质量烧蚀率为2.03×10^(-2)g·s^(-1),分别比C/C复合材料降低了48.33%和40.12%。在烧蚀过程中,HfC会与热流中的氧气反应生成熔融的HfO_(2),均匀地覆盖在基体的表面形成保护层,隔绝热流,防止基体被氧化,同时阻止热量的传递。熔融HfO_(2)的蒸发也会带走表面的部分热量。随着烧蚀时间的增加,HfO_(2)的损耗会逐渐上升,基体表面的保护层会逐渐被破坏,热流对基体产生的烧蚀损伤会更为严重。 展开更多
关键词 C/C-hfc复合材料 PIP法 微观结构 抗烧蚀性能
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MPLA衍生物的设计、合成及作为RBD⁃hFc新冠疫苗佐剂的活性研究
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作者 廖攀 苏诗微 +4 位作者 陈丽清 罗翔 廖国超 孙平华 叶连宝 《沈阳药科大学学报》 CAS CSCD 2024年第3期301-313,350,共14页
目的设计合成单磷酸脂质A(monophosphoryl lipid A,MPLA)的衍生物,考察其作为新冠病毒疫苗佐剂的开发潜力及C⁃1或C⁃6′位取代基对其活性的影响。方法以商业易得的葡萄糖胺为起始原料,经糖基化、缩合、磷酰化和氢化等反应完成目标化合物... 目的设计合成单磷酸脂质A(monophosphoryl lipid A,MPLA)的衍生物,考察其作为新冠病毒疫苗佐剂的开发潜力及C⁃1或C⁃6′位取代基对其活性的影响。方法以商业易得的葡萄糖胺为起始原料,经糖基化、缩合、磷酰化和氢化等反应完成目标化合物的合成。以临床应用的铝佐剂为阳性对照,将所得化合物与RBD⁃hFc重组蛋白新冠疫苗合用,于第0天和第14天经肌肉注射免疫小鼠。然后,分别在初次免疫后的第14、28、42、90天采血,通过检测抗体滴度与亚型、抗体血清抑制RBD结合ACE2的能力及中和抗体水平评价了目标化合物作为佐剂的免疫活性。结果合成得到5个MPLA的衍生物,产物及中间体结构经NMR和HRMS确证;生物活性测试结果表明,化合物1具有比铝佐剂更优的佐剂活性,化合物3和4的活性与铝佐剂相当。结论MPLA衍生物具有作为新冠病毒疫苗佐剂的开发潜力;初步构效关系分析表明,将MPLA的C⁃1位羟基以甲氧基和氨基替换会降低其活性,而将其C⁃6′的羟基以氨基取代可以提高活性。 展开更多
关键词 MPLA衍生物 佐剂 RBD⁃hfc 重组蛋白新冠疫苗
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纳米HfC对微波烧结TiB_(2)基金属陶瓷刀具材料力学性能和微观组织的影响
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作者 武星辰 季文彬 +1 位作者 戴士杰 张广森 《工具技术》 北大核心 2024年第2期21-27,共7页
采用微波烧结技术快速制备一种力学性能良好的TiB_(2)基金属陶瓷刀具材料,研究了纳米HfC含量对金属陶瓷力学性能和微观组织的影响,分析了微观组织和力学性能之间的关系,揭示了纳米HfC对金属陶瓷刀具材料的增强补韧机理。结果表明:加入纳... 采用微波烧结技术快速制备一种力学性能良好的TiB_(2)基金属陶瓷刀具材料,研究了纳米HfC含量对金属陶瓷力学性能和微观组织的影响,分析了微观组织和力学性能之间的关系,揭示了纳米HfC对金属陶瓷刀具材料的增强补韧机理。结果表明:加入纳米HfC可显著提高材料的断裂韧度和抗弯强度,含20wt.%HfC的金属陶瓷断裂韧度和抗弯强度相较于未加HfC的断裂韧度和抗弯强度分别提高了36.7%和45.4%,断裂韧度高达10.68MPa·m^(1/2)±0.30MPa·m^(1/2);随着纳米HfC含量的增加,TiB_(2)基体晶粒由粗大、无规则形状向细小、矩形形状转变,平均晶粒尺寸可缩小到原来的1/2.6;TiB_(2)-TiC-HfC金属陶瓷的主要增强补韧机理为细晶强化、颗粒弥散强化、固溶强化、裂纹偏转和钉扎效应。 展开更多
关键词 纳米hfc 微波烧结 TiB_(2)基金属陶瓷刀具 力学性能 微观组织
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浆料浸渍辅助PIP工艺制备C/HfC-SiC复合材料的微观结构及性能研究
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作者 粟毅 史扬帆 +4 位作者 贾成兰 迟蓬涛 高扬 马青松 陈思安 《无机材料学报》 SCIE EI CAS CSCD 北大核心 2024年第6期726-732,共7页
针对高速飞行器对于防热/承载一体化超高温陶瓷基复合材料的迫切需求,以及现有反应型HfC先驱体存在的成本高、效率低和致密效果差等不足,本研究将HfC亚微米粉体配制成稳定的陶瓷浆料,利用浆料加压浸渍辅助先驱体浸渍裂解(PIP)工艺制备了... 针对高速飞行器对于防热/承载一体化超高温陶瓷基复合材料的迫切需求,以及现有反应型HfC先驱体存在的成本高、效率低和致密效果差等不足,本研究将HfC亚微米粉体配制成稳定的陶瓷浆料,利用浆料加压浸渍辅助先驱体浸渍裂解(PIP)工艺制备了HfC基体均匀分布的C/HfC-SiC复合材料,探讨了HfC含量对于复合材料微观结构、力学与烧蚀性能的影响。结果表明,当HfC实际体积分数为13.1%~20.3%时,复合材料密度为2.20~2.58 g·cm^(-3),开孔率约为5%。通过单层碳布加压浸渍陶瓷浆料,HfC颗粒能够分散到纤维束内部,且在复合材料中分布比较均匀。提高HfC含量会降低复合材料纤维含量,其力学性能也呈现出降低趋势。当HfC体积分数为20.3%时,复合材料的密度、拉伸强度和断裂韧性分别为2.58 g·cm^(-3)、147 MPa和9.3 MPa·m^(1/2);经氧乙炔焰烧蚀60 s后,复合材料的线烧蚀率和质量烧蚀率分别为0.0062 mm/s和0.005 g/s,烧蚀过程中形成的熔融相Hf_(x)Si_(y)O_(z)能覆盖在材料表面,起到良好的保护作用。 展开更多
关键词 C/hfc-SiC复合材料 浆料浸渍 力学性能 抗烧蚀性能
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Activation Redistribution Based Hybrid Asymmetric Quantization Method of Neural Networks 被引量:1
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作者 Lu Wei Zhong Ma Chaojie Yang 《Computer Modeling in Engineering & Sciences》 SCIE EI 2024年第1期981-1000,共20页
The demand for adopting neural networks in resource-constrained embedded devices is continuously increasing.Quantization is one of the most promising solutions to reduce computational cost and memory storage on embedd... The demand for adopting neural networks in resource-constrained embedded devices is continuously increasing.Quantization is one of the most promising solutions to reduce computational cost and memory storage on embedded devices.In order to reduce the complexity and overhead of deploying neural networks on Integeronly hardware,most current quantization methods use a symmetric quantization mapping strategy to quantize a floating-point neural network into an integer network.However,although symmetric quantization has the advantage of easier implementation,it is sub-optimal for cases where the range could be skewed and not symmetric.This often comes at the cost of lower accuracy.This paper proposed an activation redistribution-based hybrid asymmetric quantizationmethod for neural networks.The proposedmethod takes data distribution into consideration and can resolve the contradiction between the quantization accuracy and the ease of implementation,balance the trade-off between clipping range and quantization resolution,and thus improve the accuracy of the quantized neural network.The experimental results indicate that the accuracy of the proposed method is 2.02%and 5.52%higher than the traditional symmetric quantization method for classification and detection tasks,respectively.The proposed method paves the way for computationally intensive neural network models to be deployed on devices with limited computing resources.Codes will be available on https://github.com/ycjcy/Hybrid-Asymmetric-Quantization. 展开更多
关键词 QUANTIZATION neural network hybrid asymmetric ACCURACY
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复杂建设环境下基于Hybrid A^(*)算法的铁路平面线形绿色优化设计
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作者 张天龙 何庆 +2 位作者 高岩 高天赐 李子涵 《高速铁路技术》 2024年第1期47-52,共6页
随着“双碳经济下绿色铁路”理念的兴起,将“绿色生态”融入到铁路平面线路优化已成为近年来的研究热点。本文以铁路建设成本与生态破坏成本的协同优化为目标,引入并改进了一种自动驾驶导航算法(Hybrid A^(*)算法),以适应复杂的铁路设... 随着“双碳经济下绿色铁路”理念的兴起,将“绿色生态”融入到铁路平面线路优化已成为近年来的研究热点。本文以铁路建设成本与生态破坏成本的协同优化为目标,引入并改进了一种自动驾驶导航算法(Hybrid A^(*)算法),以适应复杂的铁路设计问题,同时考虑最小曲线半径、最大曲线半径、最短曲线长度、最短夹直线长度、缓和曲线长度等铁路线形约束。研究结果表明:(1)改进后算法以离散网格方式整合外部环境因素,实现渐进式全局探索,获取接近全局最优的铁路线路设计结果;(2)该方法在复杂外部环境约束下,无需预设水平交点位置和数量,可自动生成符合线路-环境耦合约束的优化平面线路方案。 展开更多
关键词 铁路线路设计 水平线路 绿色生态 hybrid A^(*)算法
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HFC-365mfc/227ea替代HCFC-141b在硬质聚氨酯泡沫喷涂中的应用
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作者 闫红英 鹿毅力 +2 位作者 杨瑾 杨斌 赵义秋 《科技资讯》 2024年第8期116-119,共4页
以HFC-365mfc/227ea混合发泡剂替代HCFC-141b,采用喷涂工艺进行低密度硬质聚氨酯泡沫外绝热防护层的生产,对发泡剂用量、泡沫性能、泡沫尺寸稳定性等进行了研究。结果表明:当泡沫的密度、机械强度和导热系数满足外绝热防护层技术要求时,... 以HFC-365mfc/227ea混合发泡剂替代HCFC-141b,采用喷涂工艺进行低密度硬质聚氨酯泡沫外绝热防护层的生产,对发泡剂用量、泡沫性能、泡沫尺寸稳定性等进行了研究。结果表明:当泡沫的密度、机械强度和导热系数满足外绝热防护层技术要求时,HFC-365mfc/227ea混合发泡剂用量为38~44 g;采用HFC-365mfc/227ea混合发泡剂制备的泡沫密度与HCFC-141b相近时,发泡剂用量比HCFC-141b多25%左右,泡沫的压缩强度和模量高15%、剪切强度和模量比HCFC-141b高50%,导热系数低10%。在不超过80℃的使用温度范围内,HFC-365mfc/227ea混合发泡剂制备的泡沫具有良好的尺寸稳定性,尺寸变化率不超过1%。 展开更多
关键词 hfc-365mfc/227ea HCFC-141B 硬质聚氨酯泡沫 发泡剂 喷涂
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Production traits and fertility of reciprocal hybrids between Argopecten irradians irradians and A.i.concentricus
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作者 Jinjing WANG Junhao NING +6 位作者 Xia LU Min CHEN Guilong LIU Xin XU Quanchao WANG He XU Chunde WANG 《Journal of Oceanology and Limnology》 SCIE CAS CSCD 2024年第1期304-315,共12页
The two bay scallop subspecies,Argopecten irradians irradians(NN)and A.i.concentricus(SS),are fast growing and major cultured bivalves in China.However,their relatively small sizes and decreasing production traits cau... The two bay scallop subspecies,Argopecten irradians irradians(NN)and A.i.concentricus(SS),are fast growing and major cultured bivalves in China.However,their relatively small sizes and decreasing production traits caused by long-term inbreeding have been major concerns to the industry in the last two decades.Hybridization between the two bay scallop subspecies may provide a new approach to breed a new variety with superior production traits for the industry.For this end,in this study,we hybridized the two bay scallop subspecies in order to obtain a new strain that incorporates the genes of both subspecies.No significant difference was found in fertilization rate,hatching rate and metamorphosis rate between the purebred and crossbred cohorts(NN♀×SS♂,denoted as NS;SS♀×NN♂,denoted as SN).Both mating strategy(intra-vs.inter-population crosses)and egg origin had significant effects on growth and survival at the larval stage.Heterosis was observed in the crossbred and was more pronounced in older stages.Genetic diversity of the reciprocal hybrids,especially that of SN,was increased compared with the purebred cohorts.Almost all hybrids were completely fertile and able to reproduce by selffertilization or by backcrossing with either parent.Apparently,male sterile individuals whose gonads were fully occupied by the ovary part at mature stage were found in the hybrids for the first time.The hybrids,especially SN,may provide precious germplasm resources for the production of ternary hybrids with the Peruvian scallop,A.purpuratus. 展开更多
关键词 bay scallop hybridIZATION growth survival HETEROSIS FERTILITY ternary hybrids
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Total Fat, Fatty Acid Composition, Tocopherol and Tocotrienol Profiles in Fermented Beans of Ten Controlled Pollinated Cocoa (Theobroma cacao L.) Hybrids from Cameroon
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作者 Martin Paul Arnaud Mbida Simon Perrez Akoa +3 位作者 Ronelle Fabiola Mbia Manga Ndjaga Jude Martine Louise Ondobo Onomo Pierre Effa 《American Journal of Plant Sciences》 CAS 2024年第5期359-373,共15页
This study aimed to discriminate ten Cameroonian cocoa hybrids according to their total fat, fatty acid composition, tocopherol and tocotrienol profiles. Six cocoa clones from the gene banks of the Cameroon Cocoa Deve... This study aimed to discriminate ten Cameroonian cocoa hybrids according to their total fat, fatty acid composition, tocopherol and tocotrienol profiles. Six cocoa clones from the gene banks of the Cameroon Cocoa Development Corporation were used to create hybrids. The determination of fatty acid composition was carried out by using a gas chromatography (GC) apparatus coupled by a flame ion detector (FID). Tocopherol and tocotrienol analysis was performed by upper high-performance liquid chromatography (UHPLC). Information on the impact of the genotype on the cocoa fat composition was provided. The major fatty acids (FA) in fermented samples are stearic (34.57%), palmitic (26.13%), oleic (34.13%) and linoleic (3.16%) acids. (35.05% to 35.6%). SCA12 × ICS40, SCA12 × SNK13, SNK13 × T79/501 have the least hard cocoa butters. Tocopherols analysis showed a predominance of γ-tocopherols (94.64 ± 1.51 to 292.16 ± 3.17 µg∙g<sup>−1</sup>), whereas only a small amount of β and δ-tocopherol (from 0.46 to 2.78 µg∙g<sup>−1</sup> and 0.12 to 5.82 respectively) was observed. No γ-tocotrienol was found in fermented samples. A differentiation in terms of total fat and tocopherol content was observed amongst hybrids with the same mother-clone, suggesting an impact of pollen on these compounds. 展开更多
关键词 Cocoa hybrids Lipid Composition UHPLC GC-FID
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The Extended Hybrid Carrier-Based Multiple Access Technology for High Mobility Scenarios 被引量:1
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作者 Ge Song Xiaojie Fang Xuejun Sha 《China Communications》 SCIE CSCD 2024年第1期53-68,共16页
The hybrid carrier(HC)system rooted in the carrier fusion concept is gradually garnering attention.In this paper,we study the extended hybrid carrier(EHC)multiple access scheme to ensure reliable wireless communicatio... The hybrid carrier(HC)system rooted in the carrier fusion concept is gradually garnering attention.In this paper,we study the extended hybrid carrier(EHC)multiple access scheme to ensure reliable wireless communication.By employing the EHC modulation,a power layered multiplexing framework is realized,which exhibits enhanced interference suppression capability owing to the more uniform energy distribution design.The implementation method and advantage mechanism are explicated respectively for the uplink and downlink,and the performance analysis under varying channel conditions is provided.In addition,considering the connectivity demand,we explore the non-orthogonal multiple access(NOMA)method of the EHC system and develop the EHC sparse code multiple access scheme.The proposed scheme melds the energy spread superiority of EHC with the access capacity of NOMA,facilitating superior support for massive connectivity in high mobility environments.Simulation results have verified the feasibility and advantages of the proposed scheme.Compared with existing HC multiple access schemes,the proposed scheme exhibits robust bit error rate performance and can better guarantee multiple access performance in complex scenarios of nextgeneration communications. 展开更多
关键词 extended hybrid carrier system high mo-Received:Jun.09 2023 Revised:Nov.20 2023 Editor:Yuanwei Liu bility communications multiple access
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Hybrid Skin-Topological Effect Induced by Eight-Site Cells and Arbitrary Adjustment of the Localization of Topological Edge States
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作者 陈健智 史奥芊 +2 位作者 彭宇宸 彭鹏 刘建军 《Chinese Physics Letters》 SCIE EI CAS CSCD 2024年第3期97-113,共17页
Hybrid skin-topological effect(HSTE)in non-Hermitian systems exhibits both the skin effect and topological protection,offering a novel mechanism for localization of topological edge states(TESs)in electrons,circuits,a... Hybrid skin-topological effect(HSTE)in non-Hermitian systems exhibits both the skin effect and topological protection,offering a novel mechanism for localization of topological edge states(TESs)in electrons,circuits,and photons.However,it remains unclear whether the HSTE can be realized in quasicrystals. 展开更多
关键词 TOPOLOGICAL EFFECT hybrid
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Recent progress of hybrid cathode interface layer for organic solar cells
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作者 Jianru Wang Dan Zhou +9 位作者 Zhentian Xu Yujie Pu Senmei Lan Fang Wang Feiyan Wu Bin Hu Yongfen Tong Ruizhi Lv Honglin Chu Lie Chen 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第4期383-406,共24页
Organic solar cells(OSCs)have gained conspicuous progress during the past few decades due to the development of materials and upgrading of the device structure.The power conversion efficiency(PCE)of the single-junctio... Organic solar cells(OSCs)have gained conspicuous progress during the past few decades due to the development of materials and upgrading of the device structure.The power conversion efficiency(PCE)of the single-junction device had surpassed 19%.The cathode interface layer(CIL),by optimizing the connection between the active layer and the cathode electrode,has become a momentous part to strengthen the performances of the OSCs.Simultaneously,CIL is also indispensable to illustrating the working mechanism of OSCs and enhancing the stability of the OSCs.In this essay,hybrid CILs in OSCs have been summarized.Firstly,the advancement and operating mechanism of OSCs,and the effects and relevant design rules of CIL are briefly concluded;secondly,the significant influence of CIL on enhancing the stability and PCE of OSCs is presented;thirdly,the characteristics of organic hybrid CIL and organic-inorganic hybrid CIL are introduced.Finally,the conclusion and outlook of CIL are summarized. 展开更多
关键词 Organic solar cells Theoperation mechanism Organic hybrid cathode interface layer Organic-inorganic hybrid CIL
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High-performance magnesium/sodium hybrid ion battery based on sodium vanadate oxide for reversible storage of Na^(+)and Mg^(2+)
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作者 Xiaoke Wang Titi Li +5 位作者 Xixi Zhang Yaxin Wang Hongfei Li Hai-Feng Li Gang Zhao Cuiping Han 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第9期79-88,共10页
Magnesium ion batteries(MIBs)are a potential field for the energy storage of the future but are restricted by insufficient rate capability and rapid capacity degradation.Magnesium-sodium hybrid ion batteries(MSHBs)are... Magnesium ion batteries(MIBs)are a potential field for the energy storage of the future but are restricted by insufficient rate capability and rapid capacity degradation.Magnesium-sodium hybrid ion batteries(MSHBs)are an effective way to address these problems.Here,we report a new type of MSHBs that use layered sodium vanadate((Na,Mn)V_(8)O_(20)·5H_(2)O,Mn-NVO)cathodes coupled with an organic 3,4,9,10-perylenetetracarboxylic diimide(PTCDI)anode in Mg^(2+)/Na^(+)hybrid electrolytes.During electrochemical cycling,Mg^(2+)and Na^(+)co-participate in the cathode reactions,and the introduction of Na^(+)promotes the structural stability of the Mn-NVO cathode,as cleared by several ex-situ characterizations.Consequently,the Mn-NVO cathode presents great specific capacity(249.9 mA h g^(−1)at 300 mA g^(−1))and cycling(1500 cycles at 1500 mA g^(−1))in the Mg^(2+)/Na^(+)hybrid electrolytes.Besides,full battery displays long lifespan with 10,000 cycles at 1000 mA g^(−1).The rate performance and cycling stability of MSHBs have been improved by an economical and scalable method,and the mechanism for these improvements is discussed. 展开更多
关键词 Aqueous battery hybrid ion battery Mg^(2+)/Na^(+)co-intercalation High-rate performance Organic-water hybrid electrolyte
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MXene-based hybrid materials for electrochemical and photoelectrochemical H_(2) generation
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作者 Jun Young Kim Seung Hun Roh +2 位作者 Chengkai Xia Uk Sim Jung Kyu Kim 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第6期111-125,I0004,共16页
The conversion of solar energy to produce clean hydrogen fuel through water splitting is an emerging strategy for efficiently storing solar energy in the form of solar fuel.This aligns with the increasing global deman... The conversion of solar energy to produce clean hydrogen fuel through water splitting is an emerging strategy for efficiently storing solar energy in the form of solar fuel.This aligns with the increasing global demand for the development of an ideal energy alternative to fossil fuels that does not emit greenhouse gases.Electrochemical(EC) and photoelectrochemical(PEC) water splitting technologies have garnered significant attention worldwide for advanced hydrogen solar fuel production in recent decades.To achieve sustainable green H_(2) production,it is essential to create efficient catalyst materials that are low-cost and can replace expensive noble metal-based catalysts.These characteristics make them an ideal catalyst material for the process.Two-dimensional MXenes with M_(n+1)X_(n) structure have been identified as a promising option for EC and PEC water splitting due to their superior hydrophilicity,metal-like conductivity,large surface area,and adjustable surface chemistry.Here,we present a summary of recent advancements in the synthesis and performance enhancement methods for MXene hybrid materials in hydrogen production through EC and PEC water splitting.Furthermore,we examine the challenges and insights associated with the rational design of MXene-based hybrid materials to facilitate efficient water splitting for sustainable solar fuel production. 展开更多
关键词 MXene hybrid materials EC PEC HER OER Water splitting
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Deep genome skimming reveals the hybrid origin of Pseudosasa gracilis (Poaceae: Bambusoideae)
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作者 Xiang-Zhou Hu Cen Guo +2 位作者 Sheng-Yuan Qin De-Zhu Li Zhen-Hua Guo 《Plant Diversity》 SCIE CAS CSCD 2024年第3期344-352,共9页
Pseudosasa gracilis(Poaceae:Bambusoideae)is a temperate woody bamboo species endemic to Southcentral China with a narrow distribution.Previous phylogenetic studies revealed an unexpected,isolated phylogenetic position... Pseudosasa gracilis(Poaceae:Bambusoideae)is a temperate woody bamboo species endemic to Southcentral China with a narrow distribution.Previous phylogenetic studies revealed an unexpected,isolated phylogenetic position of Ps.gracilis.Here we conducted phylogenomic analysis by sampling populations of Ps.gracilis and its sympatric species Ps.nanunica and Sinosasa polytricha reflecting different genomic signals,by deep genome skimming.Integrating molecular evidence from chloroplast genes and genome-wide SNPs,we deciphered the phylogenetic relationships of Ps.gracilis.Both plastid and nuclear data indicate that Ps.gracilis is more closely related to Sinosasa,which is discordant with the taxonomic treatment.To further explore this molecular-morphological conflict,we screened 411“perfect-copy”syntenic genes to reconstruct phylogenies using both the concatenation and coalescent methods.We observed extensive discordance between gene trees and the putative species tree.A significant hybridization event was detected based on 411 genes from the D subgenome,showing Ps.gracilis was a hybrid descendant between Sinosasa longiligulata and Ps.nanunica,with 63.56%and 36.44%inheritance probabilities of each parent.Moreover,introgression events were detected in the C subgenome between Ps.gracilis and S.polytricha in the same distribution region.Our findings suggest that sympatric hybridization and introgression play a crucial role in the origin of Ps.gracilis.By providing an empirical example of bamboo of hybrid origin using comprehensive analyses based on genomic data from different inheritance systems and morphological characters,our study represents a step forward in understanding of reticulate evolution of bamboos. 展开更多
关键词 PHYLOGENOMICS hybridization INTROGRESSION Pseudosasa gracilis Pseudosasa Sinosasa
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Transcriptomic and metabolomic analysis provides insights into lignin biosynthesis and accumulation and differences in lodging resistance in hybrid wheat
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作者 Weibing Yang Shengquan Zhang +7 位作者 Qiling Hou Jiangang Gao Hanxia Wang Xianchao Chen Xiangzheng Liao Fengting Zhang Changping Zhao Zhilie Qin 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2024年第4期1105-1117,共13页
The use of hybrid wheat is one way to improve the yield in the future.However,greater plant heights increase lodging risk to some extent.In this study,two hybrid combinations with differences in lodging resistance wer... The use of hybrid wheat is one way to improve the yield in the future.However,greater plant heights increase lodging risk to some extent.In this study,two hybrid combinations with differences in lodging resistance were used to analyze the stem-related traits during the filling stage,and to investigate the mechanism of the difference in lodging resistance by analyzing lignin synthesis of the basal second internode(BSI).The stem-related traits such as the breaking strength,stem pole substantial degree(SPSD),and rind penetration strength(RPS),as well as the lignin content of the lodging-resistant combination(LRC),were significantly higher than those of the lodgingsensitive combination(LSC).The phenylpropanoid biosynthesis pathway was significantly and simultaneously enriched according to the transcriptomics and metabolomics analysis at the later filling stage.A total of 35 critical regulatory genes involved in the phenylpropanoid pathway were identified.Moreover,42%of the identified genes were significantly and differentially expressed at the later grain-filling stage between the two combinations,among which more than 80%were strongly up-regulated at that stage in the LRC compared with LSC.On the contrary,the LRC displayed lower contents of lignin intermediate metabolites than the LSC.These results suggested that the key to the lodging resistance formation of LRC is largely the higher lignin synthesis at the later grain-filling stage.Finally,breeding strategies for synergistically improving plant height and lodging resistance of hybrid wheat were put forward by comparing the LRC with the conventional wheat applied in large areas. 展开更多
关键词 gene expression lignin synthesis lodging-resistance hybrid wheat
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Efficient removal of U(VI) from wastewater by a sponge-like 3D porous architecture with hybrid electrospun nanofibers
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作者 Lin Hu Lin Chen +4 位作者 Xian-kun Wu Rui Luo Rong-guan Lv Zheng-hao Fei Feng Yang 《Water Science and Engineering》 EI CAS CSCD 2024年第2期150-156,共7页
Removal of uranium(VI)from nuclear wastewater is urgent due to the global nuclear energy exploitation.This study synthesized novel sponge-like 3D porous materials for enhanced uranium adsorption by combining electrosp... Removal of uranium(VI)from nuclear wastewater is urgent due to the global nuclear energy exploitation.This study synthesized novel sponge-like 3D porous materials for enhanced uranium adsorption by combining electrospinning and fibrous freeze-shaping techniques.The materials possessed an organic-inorganic hybrid architecture based on the electrospun fibers of polyacrylonitrile(PAN)and SiO_(2).As a sup-porting material,the surface of fibrous SiO_(2) could be further functionalized by cyano groups via(3-cyanopropyl)triethoxysilane.All the cyano groups were turned into amidoxime(AO)groups to obtain a amidoxime-functionalized sponge(PAO/SiO_(2)-AO)through the subsequent ami-doximation process.The proposed sponge exhibited enhanced uranium adsorption performance with a high removal capacity of 367.12 mg/g,a large adsorption coefficient of 4.0×10^(4)mL/g,and a high removal efficiency of 97.59%.The UO_(2)^(2+)adsorption kinetics perfectly conformed to the pseudo-second-order reaction.The sorbent also exhibited an excellent selectivity for UO_(2)^(2+) with other interfering metal ions.2023 Hohai University.Production and hosting by Elsevier B.V. 展开更多
关键词 Uranium removal SPONGE Amidoximation Organic-inorganic hybrid structure ELECTROSPINNING
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Degradation and biocompatibility of one-step electrodeposited magnesium thioctic acid/magnesium hydroxide hybrid coatings on ZE21B alloys for cardiovascular stents
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作者 Zhao-Qi Zhang Bing-Zhi Li +5 位作者 Pei-Duo Tong Shao-Kang Guan Li Wang Zheng-Hui Qiu Cun-Guo Lin Rong-Chang Zeng 《Journal of Magnesium and Alloys》 SCIE EI CAS CSCD 2024年第1期120-138,共19页
Constructing a functional hybrid coating appears to be a promising strategy for addressing the poor corrosion resistance and insufficient endothelialization of Mg-based stents.Nevertheless,the steps for preparing comp... Constructing a functional hybrid coating appears to be a promising strategy for addressing the poor corrosion resistance and insufficient endothelialization of Mg-based stents.Nevertheless,the steps for preparing composite coatings are usually complicated and time-consuming.Herein,a novel composite coating,composed of bioactive magnesium thioctic acid(MTA)layer formed by deposition and corrosion-resistant magnesium hydroxide(Mg(OH)_(2))layer grown in situ,is simply fabricated on ZE21B alloys via one-step electrodeposition.Scanning electron microscopy(SEM)shows that the electrodeposited coating has a compact and uniform structure.And the high adhesion of the MTA/Mg(OH)_(2)hybrid coating is also confirmed by the micro-scratch test.Electrochemical test,scanning kelvin probe(SKP),and hydrogen evolution measurement indicate that the hybrid coating effectively reduces the degradation rate of Mg substrates.Haemocompatibility experiment and cell culture trial detect that the composite coating is of fine biocompatibility.Finally,the preparation mechanism of MTA/Mg(OH)_(2)hybrid coatings is discussed and proposed.This coating shows a great potential application for cardiovascular stents. 展开更多
关键词 Magnesium alloy Corrosion resistance hybrid coating ENDOTHELIALIZATION BIOCOMPATIBILITY
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