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Fe^(2+)/Mn^(2+)活化亚硫酸盐降解盐酸土霉素的机理研究
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作者 贾艳萍 阴东旭 +2 位作者 徐静仪 张海丰 张兰河 《化工学报》 EI CSCD 北大核心 2024年第2期647-658,共12页
盐酸土霉素常被用于治疗畜禽疾病,但是它不能被畜禽完全代谢,残留的盐酸土霉素进入水体危害水环境的健康。铁锰作为常见的过渡金属,通常以二价态活化亚硫酸盐来降解有机污染物,反应条件温和、操作简单,但是单独的二价铁与二价锰氧化还... 盐酸土霉素常被用于治疗畜禽疾病,但是它不能被畜禽完全代谢,残留的盐酸土霉素进入水体危害水环境的健康。铁锰作为常见的过渡金属,通常以二价态活化亚硫酸盐来降解有机污染物,反应条件温和、操作简单,但是单独的二价铁与二价锰氧化还原电势低,活化亚硫酸盐效果较差。本研究采用Fe^(2+)/Mn^(2+)共活化Na_(2)SO_(3)降解水中的盐酸土霉素,考察药剂用量、pH、溶解氧、氯离子、碳酸根及腐殖酸对Fe^(2+)/Mn^(2+)/Na_(2)SO_(3)体系降解盐酸土霉素的影响;通过焦磷酸盐实验、自由基淬灭实验和EPR实验分析Fe^(2+)/Mn^(2+)/Na_(2)SO_(3)体系中的活性物种;利用紫外可见光谱、傅里叶红外光谱、气相色谱-质谱联用仪识别盐酸土霉素的官能团及其降解中间产物的变化,推断盐酸土霉素的降解途径。结果表明:当Fe^(2+)/Mn^(2+)/Na_(2)SO_(3)浓度比为1∶4∶20(浓度分别为0.1、0.4和2 mmol/L)时,在反应45 min、pH为9.0条件下,盐酸土霉素的去除率和矿化率最高,分别达到94%和49%。随着溶解氧从9 mg/L下降至1.89 mg/L,盐酸土霉素去除率从94%下降至17%;氯离子、腐殖酸和碳酸根均对盐酸土霉素的降解产生抑制作用。Mn(Ⅲ)和SO_(4)·^(-)是降解盐酸土霉素的主要活性氧化剂,盐酸土霉素的降解经过电子转移、开环与酰基化等过程。 展开更多
关键词 Fe^(2+)/Mn^(2+)/Na_(2)SO_(3)体系 盐酸土霉素 活化 自由基 氧化
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Mn^(2+)掺杂对YAG∶Ce^(3+)荧光陶瓷发光性能的影响
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作者 喻彬 孙炳恒 +7 位作者 付秀梅 周世斌 郝好莹 沈方樑 范金太 姜本学 张龙 孙军 《发光学报》 EI CAS CSCD 北大核心 2024年第5期762-771,共10页
过渡族金属Mn^(2+)掺杂的石榴石荧光陶瓷被认为是实现高显色激光照明的候选材料。然而,由于Mn^(2+)在不同配位环境下离子半径的多样性,Mn^(2+)掺杂石榴石陶瓷体系设计方案尚不明确。本文采用真空烧结技术制备得到不同浓度Mn^(2+)掺杂的... 过渡族金属Mn^(2+)掺杂的石榴石荧光陶瓷被认为是实现高显色激光照明的候选材料。然而,由于Mn^(2+)在不同配位环境下离子半径的多样性,Mn^(2+)掺杂石榴石陶瓷体系设计方案尚不明确。本文采用真空烧结技术制备得到不同浓度Mn^(2+)掺杂的YAG∶Ce^(3+)荧光陶瓷,并将Mn^(2+)分别设计进入八面体(OC)和十二面体(DO)格位。通过表征样品物相和显微结构、光致发光、荧光寿命、量子效率等,并通过LD激光器激发对荧光陶瓷的发光性能进行研究。实验结果表明,在添加电荷与体积补偿剂SiO_(2)的前提下,相比Mn^(2+)进入十二面体格位,Mn^(2+)进入八面体后石榴石的晶体结构更加稳定。因此,当Mn^(2+)的浓度控制在0.5%^(6)%(at)范围内,OC系列样品的量子效率高于DO系列样品。此外,OC系列样品的PL谱中位于588 nm和725 nm处的发射峰分别对应于Mn^(2+)占据八面体和十二面体格位的^(4)T_(1)→^(6)A_(1)电子跃迁,而DO系列样品中位于572 nm处的发射峰则源于Mn^(2+)占据扭曲的十二面体格位产生的电子跃迁。得益于Ce^(3+)→Mn^(2+)间高效的能量传递,将浓度为6%(at)的Mn^(2+)设计进入YAG∶Ce^(3+)中八面体格位制得荧光陶瓷,封装得到的激光白光光源的显色指数为70.8,相对色温为5117 K。本文对于Mn^(2+)掺杂的石榴石发光材料的开发研究是有力补充,也为提升YAG∶Ce^(3+)荧光陶瓷光谱中的红光成分,进而提高医疗、显示等领域的激光光源的显色性能提供借鉴。 展开更多
关键词 荧光陶瓷 Ce^(3+)掺杂 Mn^(2+)掺杂 格位
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Mn^(2+)促进Bacillus altitudinis LZP02生物膜形成
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作者 单馨 黄东慧 +3 位作者 徐伟慧 王志刚 陈文晶 胡云龙 《生物技术通报》 CAS CSCD 北大核心 2024年第3期251-260,共10页
【目的】Bacillus altitudinis LZP02是一株水稻根际促生菌(PGPR),能定殖于水稻根部,形成生物膜,且Mn^(2+)对LZP02菌株生物膜形成具有促进作用,但调控机制尚不明确,旨在探究Mn^(2+)对LZP02菌株生物膜形成的促进机制。【方法】采用结晶... 【目的】Bacillus altitudinis LZP02是一株水稻根际促生菌(PGPR),能定殖于水稻根部,形成生物膜,且Mn^(2+)对LZP02菌株生物膜形成具有促进作用,但调控机制尚不明确,旨在探究Mn^(2+)对LZP02菌株生物膜形成的促进机制。【方法】采用结晶紫染色法进行生物膜定量分析、蒽酮-硫酸法测定胞外多糖产量、扫描电镜(SEM)观察LZP02菌株在水稻根际定殖情况、转录组学测序技术分析差异表达基因(DEGs)。【结果】添加4 mmol/L Mn^(2+)和8 mmol/L Mn^(2+)显著提高了LZP02菌株的成膜能力和胞外多糖产量,扫描电镜发现4 mmol/L Mn^(2+)和8 mmol/L Mn^(2+)提高了LZP02菌株在水稻根际的定殖能力,随着Mn^(2+)浓度的增加,DEGs数量显著增多,其主要富集在芽孢形成、毒素代谢途径和双组分系统中。1 mmol/L Mn^(2+)和4 mmol/L Mn^(2+)处理组发现skf操纵子中基因的表达均上调。扫描电镜观察发现在1 mmol/L Mn^(2+)和4 mmol/L Mn^(2+)处理组中LZP02菌体存在损伤。4 mmol/L Mn^(2+)处理组双组分系统中KinE和Spo0A基因均显著上调。【结论】Mn^(2+)通过“嗜食同类”和双组分系统中KinE基因激活Spo0A~P提高了菌株LZP02的成膜能力。 展开更多
关键词 Bacillus altitudinis LZP02 生物膜 Mn^(2+)
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Mn^(2+)掺杂准二维钙钛矿的制备及发光性能调控
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作者 朱珂欣 李靖 +1 位作者 陈旖勃 庞起 《发光学报》 EI CAS CSCD 北大核心 2024年第10期1647-1655,共9页
准二维(Q-2D)卤化铅钙钛矿由于兼具二维(2D)钙钛矿的高稳定性和三维(3D)钙钛矿的高光吸收效率引起了人们的广泛关注。然而,Q-2D卤化铅钙钛矿发光效率通常较低且具有铅毒性。本文使用简单的室温反溶剂法制备了Mn^(2+)掺杂Q-2D卤化铅钙钛... 准二维(Q-2D)卤化铅钙钛矿由于兼具二维(2D)钙钛矿的高稳定性和三维(3D)钙钛矿的高光吸收效率引起了人们的广泛关注。然而,Q-2D卤化铅钙钛矿发光效率通常较低且具有铅毒性。本文使用简单的室温反溶剂法制备了Mn^(2+)掺杂Q-2D卤化铅钙钛矿材料PEA2MAPb2Br7∶Mn(PEA:苯乙胺;MA:甲胺)。在365 nm紫外光激发下,Mn^(2+)掺杂Q-2D钙钛矿呈现明亮的橙色发射。发光光谱展现了弱的激子发光峰和位于610 nm的强橙色发射光,归属于Mn^(2+)的特征发射峰。光致发光量子产率(PLQY)从Mn^(2+)掺杂前的1.49%提高到50.25%,提高的原因是Mn^(2+)掺杂抑制了3D钙钛矿的生长,从而提高了2D相比例;由于2D结构具有显著的量子限域效应,导致电子态和空穴态的能级密度增加,从而有效提高了宿主和Mn^(2+)之间的能量传输效率。本工作探索了离子掺杂调控Q-2D物相结构及能量传递策略,为波长可调、高发光效率的卤化物钙钛矿研究提供了借鉴。 展开更多
关键词 准二维钙钛矿 Mn^(2+)掺杂 发光性能
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Mn^(2+)掺杂Cs_(3)Cu_(2)I_(5)微晶的温和、快速溶液法合成
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作者 严鑫鑫 胡扬香 +2 位作者 万凝 庞起 陈旖勃 《发光学报》 EI CAS CSCD 北大核心 2024年第3期375-382,共8页
在铜基金属卤化物Cs_(3)Cu_(2)I_(5)中掺杂Mn^(2+)是拓宽发光范围的重要途径,但是已报道的掺杂方法大多需要高温、惰性气氛、较长时间和专用设备等。本工作将CsI固体粉末直接投加至CuI和MnCl_(2)的氢碘酸溶液中,在较低温度(60℃)、空气... 在铜基金属卤化物Cs_(3)Cu_(2)I_(5)中掺杂Mn^(2+)是拓宽发光范围的重要途径,但是已报道的掺杂方法大多需要高温、惰性气氛、较长时间和专用设备等。本工作将CsI固体粉末直接投加至CuI和MnCl_(2)的氢碘酸溶液中,在较低温度(60℃)、空气条件下快速(3 min)合成Mn^(2+)掺杂Cs_(3)Cu_(2)I_(5)微晶,并测试了其结构和发光性能。通过系列对比实验,提出一种由反应物溶解度控制的“缓释生长-掺杂”机制,证实CsI固体粉末在高浓度氢碘酸中的缓慢溶解能够降低Cs_(3)Cu_(2)I_(5)晶体的生长速率,为Mn^(2+)的低温、可控掺杂提供有利的动力学条件。该方法为全无机金属卤化物体系的掺杂发光和掺杂动力学研究提供了新的思路。 展开更多
关键词 Mn^(2+)掺杂 缓释生长-掺杂 Cs_(3)Cu_(2)I_(5)
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羟基磷灰石的优化制备及其对Mn^(2+)的吸附性能
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作者 聂家璇 张卫民 +1 位作者 卢琪愿 彭惠靖 《有色金属(冶炼部分)》 CAS 北大核心 2024年第4期139-146,共8页
使用共沉淀法,在不同pH、Ca/P摩尔比、陈化时间条件下制备羟基磷灰石(HAP),并根据其对Mn^(2+)的吸附性能获得制备HAP的优化条件。在此基础上,通过静态试验,研究了优化制备的HAP在溶液pH、投加量、反应时间以及Mn^(2+)初始浓度的影响下对... 使用共沉淀法,在不同pH、Ca/P摩尔比、陈化时间条件下制备羟基磷灰石(HAP),并根据其对Mn^(2+)的吸附性能获得制备HAP的优化条件。在此基础上,通过静态试验,研究了优化制备的HAP在溶液pH、投加量、反应时间以及Mn^(2+)初始浓度的影响下对Mn^(2+)的吸附性能,并结合吸附动力学模型和吸附等温模型分析其吸附机理。结果表明,HAP的最佳制备条件为pH=10、摩尔比Ca/P=1.67、陈化时间24 h。当锰初始浓度5 mg/L、pH=7、HAP投加量1 g/L、反应时间360 min时,HAP对Mn^(2+)的吸附效果最好,其吸附量与去除率分别为4.97 mg/g和98.4%。HAP对Mn^(2+)的吸附更符合Freundlich等温线模型和准二级动力学模型,为多层化学吸附。 展开更多
关键词 羟基磷灰石 Mn^(2+) 优化制备 吸附性能
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NaZH复合材料的制备及其对Mn^(2+)的吸附性能
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作者 容智尔 张卫民 +1 位作者 卢琪愿 彭惠靖 《有色金属(冶炼部分)》 CAS 北大核心 2024年第4期129-138,共10页
制备3%NaCl改性沸石负载羟基磷灰石复合材料(NaZH),采用摇瓶试验研究pH、材料投加量、Mn^(2+)初始浓度和反应时间对NaZH吸附Mn^(2+)效果的影响,并通过吸附动力学模型和吸附等温模型初步分析吸附机理。此外,应用SEM-EDS、BET、FTIR和XPS... 制备3%NaCl改性沸石负载羟基磷灰石复合材料(NaZH),采用摇瓶试验研究pH、材料投加量、Mn^(2+)初始浓度和反应时间对NaZH吸附Mn^(2+)效果的影响,并通过吸附动力学模型和吸附等温模型初步分析吸附机理。此外,应用SEM-EDS、BET、FTIR和XPS等表征手段进一步探究NaZH的材料性质及反应机理。结果表明,Mn^(2+)溶液pH=7、初始浓度5 mg/L、NaZH投加量2 g/L和反应时间240 min为最佳吸附条件,此时Mn^(2+)去除率和吸附量分别为99.25%和2.58 mg/g。吸附过程符合Freundlich模型和准二级动力学模型,为多层化学吸附。表征结果显示,NaZH是羟基磷灰石包裹在沸石表面的复合材料,粗糙多孔,官能团丰富。NaZH主要以溶解-沉淀、离子交换和表面络合三种形式吸附Mn^(2+)。 展开更多
关键词 NaZH复合材料 Mn^(2+) 吸附性能 可渗透反应墙
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Co-doped BaFe_(2)As_(2) Josephson junction fabricated with a focused helium ion beam 被引量:1
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作者 陈紫雯 张焱 +6 位作者 马平 徐中堂 李宇龙 王越 路建明 马衍伟 甘子钊 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第4期181-186,共6页
Josephson junction plays a key role not only in studying the basic physics of unconventional iron-based superconductors but also in realizing practical application of thin-film based devices,therefore the preparation ... Josephson junction plays a key role not only in studying the basic physics of unconventional iron-based superconductors but also in realizing practical application of thin-film based devices,therefore the preparation of high-quality iron pnictide Josephson junctions is of great importance.In this work,we have successfully fabricated Josephson junctions from Co-doped BaFe_(2)As_(2)thin films using a direct junction fabrication technique which utilizes high energy focused helium ion beam(FHIB).The electrical transport properties were investigated for junctions fabricated with various He^(+)irradiation doses.The junctions show sharp superconducting transition around 24 K with a narrow transition width of 2.5 K,and a dose correlated foot-structure resistance which corresponds to the effective tuning of junction properties by He^(+)irradiation.Significant J_c suppression by more than two orders of magnitude can be achieved by increasing the He^(+)irradiation dose,which is advantageous for the realization of low noise ion pnictide thin film devices.Clear Shapiro steps are observed under 10 GHz microwave irradiation.The above results demonstrate the successful fabrication of high quality and controllable Co-doped BaFe_(2)As_(2)Josephson junction with high reproducibility using the FHIB technique,laying the foundation for future investigating the mechanism of iron-based superconductors,and also the further implementation in various superconducting electronic devices. 展开更多
关键词 focused helium ion beam Co doped BaFe_(2)As_(2) Josephson junction
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Hierarchically Structured Nb_(2)O_5 Microflowers with Enhanced Capacity and Fast-Charging Capability for Flexible Planar Sodium Ion Micro-Supercapacitors 被引量:1
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作者 Jiaxin Ma Jieqiong Qin +8 位作者 Shuanghao Zheng Yinghua Fu Liping Chi Yaguang Li Cong Dong Bin Li Feifei Xing Haodong Shi Zhong‑Shuai Wu 《Nano-Micro Letters》 SCIE EI CAS CSCD 2024年第4期97-109,共13页
Planar Na ion micro-supercapacitors(NIMSCs) that offer both high energy density and power density are deemed to a promising class of miniaturized power sources for wearable and portable microelectron-ics. Nevertheless... Planar Na ion micro-supercapacitors(NIMSCs) that offer both high energy density and power density are deemed to a promising class of miniaturized power sources for wearable and portable microelectron-ics. Nevertheless, the development of NIMSCs are hugely impeded by the low capacity and sluggish Na ion kinetics in the negative electrode.Herein, we demonstrate a novel carbon-coated Nb_(2)O_5 microflower with a hierarchical structure composed of vertically intercrossed and porous nanosheets, boosting Na ion storage performance. The unique structural merits, including uniform carbon coating, ultrathin nanosheets and abun-dant pores, endow the Nb_(2)O_5 microflower with highly reversible Na ion storage capacity of 245 mAh g^(-1) at 0.25 C and excellent rate capability.Benefiting from high capacity and fast charging of Nb_(2)O_5 microflower, the planar NIMSCs consisted of Nb_(2)O_5 negative electrode and activated car-bon positive electrode deliver high areal energy density of 60.7 μWh cm^(-2),considerable voltage window of 3.5 V and extraordinary cyclability. Therefore, this work exploits a structural design strategy towards electrode materials for application in NIMSCs, holding great promise for flexible microelectronics. 展开更多
关键词 Nb_(2)O_5 nanosheets Microflowers Sodium ion micro-supercapacitors FLEXIBILITY Energy storage
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Delving into the dissimilarities in electrochemical performance and underlying mechanisms for sodium and potassium ion storage in N-doped carbon-encapsulated metallic Cu_(2)Se nanocubes
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作者 Xinyu Wang Yanan Xu +4 位作者 Xiaofeng Liu Lei Tan Huaiqiang Gu Xin Du Dan Li 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第8期336-347,I0008,共13页
The large volumetric variations experienced by metal selenides within conversion reaction result in inferior rate capability and cycling stability,ultimately hindering the achievement of superior electrochemical perfo... The large volumetric variations experienced by metal selenides within conversion reaction result in inferior rate capability and cycling stability,ultimately hindering the achievement of superior electrochemical performance.Herein,metallic Cu_(2)Se encapsulated with N-doped carbon(Cu_(2)Se@NC)was prepared using Cu_(2)O nanocubes as templates through a combination of dopamine polymerization and hightemperature selenization.The unique nanocubic structure and uniform N-doped carbon coating could shorten the ion transport distance,accelerate electron/charge diffusion,and suppress volume variation,ultimately ensuring Cu_(2)Se@NC with excellent electrochemical performance in sodium ion batteries(SIBs)and potassium ion batteries(PIBs).The composite exhibited excellent rate performance(187.7 mA h g^(-1)at 50 A g^(-1)in SIBs and 179.4 mA h g^(-1)at 5 A g^(-1)in PIBs)and cyclic stability(246,8 mA h g^(-1)at 10 A g^(-1)in SIBs over 2500 cycles).The reaction mechanism of intercalation combined with conversion in both SIBs and PIBs was disclosed by in situ X-ray diffraction(XRD)and ex situ transmission electron microscope(TEM).In particular,the final products in PIBs of K_(2)Se and K_(2)Se_(3)species were determined after discharging,which is different from that in SIBs with the final species of Na_(2)Se.The density functional theory calculation showed that carbon induces strong coupling and charge interactions with Cu_(2)Se,leading to the introduction of built-in electric field on heterojunction to improve electron mobility.Significantly,the theoretical calculations discovered that the underlying cause for the relatively superior rate capability in SIBs to that in PIBs is the agile Na~+diffusion with low energy barrier and moderate adsorption energy.These findings offer theoretical support for in-depth understanding of the performance differences of Cu-based materials in different ion storage systems. 展开更多
关键词 Cu_(2)Se nanocubes DFT calculations ion storage mechanism Potassium ion batteries Sodium ion batteries
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Synthesis and Luminescence Improvement of CaAlSiN_(3) Phosphors Doped with Eu^(2+) and Mn^(2+) for White LEDs
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作者 WEI Dong SU Wenxia 《发光学报》 EI CAS CSCD 北大核心 2024年第10期1656-1666,共11页
Eu^(2+) and Mn^(2+) co-activated CaAlSiN_(3) red phosphors were produced using the solid-state reaction tech⁃nique in a N2 environment.Excitation spectra,emission spectra,and diffuse reflection spectra were used to st... Eu^(2+) and Mn^(2+) co-activated CaAlSiN_(3) red phosphors were produced using the solid-state reaction tech⁃nique in a N2 environment.Excitation spectra,emission spectra,and diffuse reflection spectra were used to study the luminescence characteristics,energy gap,and thermal stability in detail.CaAlSiN_(3)∶Eu^(2+) exhibits an extended emission band when stimulated with 450 nm blue light,which is caused by the 4f65d to 4f7 transition of Eu^(2+).Similar⁃ly,CaAlSiN_(3)∶Mn^(2+) displays a wide emission band centered at 628 nm,which results from Mn^(2+)’s transition from 4T1(4G) to 6A1(6S).When the ions of Mn^(2+)were combined into CaAlSiN_(3)∶Eu^(2+),the photoluminescence intensity of Eu^(2+ )was greatly boosted because there was energy transfer and co-emission between Mn^(2+) and Eu^(2+).Beyond that,CaAlSiN_(3)∶Eu^(2+),Mn^(2+) emerges with splendid thermostability and high quantum efficiency,the quenching temperature surpasses 300℃,and the internal quantum efficiency is determined to be around 84.9%.The white LED was pack⁃aged with a combination of CaAlSiN_(3)∶Eu^(2+),Mn^(2+),LuAG∶Ce3+ and a blue chip.At a warm white-light corresponding color temperature(3009 K) with CIE coordinates(0.4223,0.3748),the color rendering index Ra has reached 93.2.CaAlSiN_(3)∶Eu^(2+),Mn^(2+) would have great application potential as a red-emitting phosphor for white LEDs. 展开更多
关键词 energy transfer silicon nitrides CaAlSiN_(3)∶Eu^(2+) Mn^(2+) red phosphor
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In Situ Growth of 2D Metal–Organic Framework Ion Sieve Interphase for Reversible Zinc Anodes
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作者 Jing Sun Qinping Jian +2 位作者 Bin Liu Pengzhu Lin Tianshou Zhao 《Energy & Environmental Materials》 SCIE EI CAS CSCD 2024年第6期158-166,共9页
Zinc metal anodes are gaining popularity in aqueous electrochemical energy storage systems for their high safety,cost-effectiveness,and high capacity.However,the service life of zinc metal anodes is severely constrain... Zinc metal anodes are gaining popularity in aqueous electrochemical energy storage systems for their high safety,cost-effectiveness,and high capacity.However,the service life of zinc metal anodes is severely constrained by critical challenges,including dendrites,water-induced hydrogen evolution,and passivation.In this study,a protective two-dimensional metal–organic framework interphase is in situ constructed on the zinc anode surface with a novel gel vapor deposition method.The ultrathin interphase layer(~1μm)is made of layer-stacking 2D nanosheets with angstrom-level pores of around 2.1Å,which serves as an ion sieve to reject large solvent–ion pairs while homogenizes the transport of partially desolvated zinc ions,contributing to a uniform and highly reversible zinc deposition.With the shielding of the interphase layer,an ultra-stable zinc plating/stripping is achieved in symmetric cells with cycling over 1000 h at 0.5 mA cm−2 and~700 h at 1 mA cm^(−2),far exceeding that of the bare zinc anodes(250 and 70 h).Furthermore,as a proof-of-concept demonstration,the full cell paired with MnO_(2) cathode demonstrates improved rate performances and stable cycling(1200 cycles at 1 A g−1).This work provides fresh insights into interphase design to promote the performance of zinc metal anodes. 展开更多
关键词 2D MOF DESOLVATion INTERPHASE ion sieve zinc anode
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In situ luminescence measurements of GaN/Al_(2)O_(3) film under different energy proton irradiations
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作者 蒋文丽 欧阳潇 +6 位作者 仇猛淋 英敏菊 陈琳 庞盼 张春雷 张耀锋 廖斌 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第5期704-710,共7页
Ion beam-induced luminescence(IBIL) experiments were performed to investigate the in situ luminescence of GaN/Al_(2)O_(3) at varying ion energies,which allowed for the measurement of defects at different depths within... Ion beam-induced luminescence(IBIL) experiments were performed to investigate the in situ luminescence of GaN/Al_(2)O_(3) at varying ion energies,which allowed for the measurement of defects at different depths within the material.The energies of H^(+)were set to 500 keV,640 keV and 2 MeV,the Bragg peaks of which correspond to the GaN film,GaN/Al_(2)O_(3) heterojunction and Al_(2)O_(3) substrate,respectively.A photoluminescence measurement at 250 K was also performed for comparison,during which only near band edge(NBE) and yellow band luminescence in the GaN film were observed.The evolution of the luminescence of the NBE and yellow band in the GaN film was discussed,and both exhibited a decrease with the fluence of H^(+).Additionally,the luminescence of F centers,induced by oxygen vacancies,and Cr^(3+),resulting from the ^(2)E →^(4)A_(2) radiative transition in Al_(2)O_(3),were measured using 2 MeV H^(+).The luminescence intensity of F centers increases gradually with the fluence of H^(+).The luminescence evolution of Cr^(3+)is consistent with a yellow band center,attributed to its weak intensity,and it is situated within the emission band of the yellow band in the GaN film.Our results show that IBIL measurement can effectively detect the luminescence behavior of multilayer films by adjusting the ion energy.Luminescence measurement can be excited by various techniques,but IBIL can satisfy in situ luminescence measurement,and multilayer structural materials of tens of micrometers can be measured through IBIL by adjusting the energy of the inducing ions.The evolution of defects at different layers with ion fluence can be obtained. 展开更多
关键词 ion beam-induced luminescence(IBIL) GaN/Al_(2)O_(3) ion beam
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Investigations on MoS_(2)plasma by infra-red pulsed laser irradiation in high vacuum
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作者 Lorenzo TORRISI Letteria SILIPIGNI +1 位作者 Alfio TORRISI Mariapompea CUTRONEO 《Plasma Science and Technology》 SCIE EI CAS CSCD 2024年第7期123-133,共11页
MoS_(2)targets were irradiated by infra-red(IR)pulsed laser in a high vacuum to determine hot plasma parameters,atomic,molecular and ion emission,and angular and charge state distributions.In this way,pulsed laser dep... MoS_(2)targets were irradiated by infra-red(IR)pulsed laser in a high vacuum to determine hot plasma parameters,atomic,molecular and ion emission,and angular and charge state distributions.In this way,pulsed laser deposition(PLD)of thin films on graphene oxide substrates was also realized.An Nd:YAG laser,operating at the 1064 nm wavelength with a 5 ns pulse duration and up to a 1 J pulse energy,in a single pulse or at a 10 Hz repetition rate,was employed.Ablation yield was measured as a function of the laser fluence.Plasma was characterized using different analysis techniques,such as time-of-flight measurements,quadrupole mass spectrometry and fast CCD visible imaging.The so-produced films were characterized by composition,thickness,roughness,wetting ability,and morphology.When compared to the MoS_(2)targets,they show a slight decrease of S with respect to Mo,due to higher ablation yield,low fusion temperature and high sublimation in vacuum.The pulsed IR laser deposited Mo Sx(with 1<x<2)films are uniform,with a thickness of about 130 nm,a roughness of about 50 nm and a higher wettability than the MoS_(2)targets.Some potential applications of the pulsed IR laser-deposited Mo Sx films are also presented and discussed. 展开更多
关键词 MoS_(2) laser ablation PLASMA ion acceleration quadrupole mass spectrometry PLD
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Polypyride intercalation boosting the kinetics and stability of V_(3)O_(7)·H_(2)O cathodes for aqueous zinc-ion batteries
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作者 Qingqing He Jie Bai +4 位作者 Mengda Xue Yanxin Liao Huayu Wang Mujun Long Lingyun Chen 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第10期361-370,I0007,共11页
V_(3)O_(7)·H_(2)O(VO)is a high capacity cathode material in the field of aqueous zinc ion batteries(AZIBs),but it is limited by slow ion migration and low electrical conductivity.In this paper,polypyridine(PPyd)i... V_(3)O_(7)·H_(2)O(VO)is a high capacity cathode material in the field of aqueous zinc ion batteries(AZIBs),but it is limited by slow ion migration and low electrical conductivity.In this paper,polypyridine(PPyd)intercalated VO with nanoribbon structure was prepared by a simple in-situ pre-intercalation,which is noted VO-PPyd.The total density of states(TDOS)shows that after the pre-intercalation of PPyd,an intermediate energy level appears between the valence band and conduction band,which provides a step that can effectively reduce the band gap and enhance the electron conductivity.Furthermore,the density functional theory(DFT)results found that Zn^(2+)is more easily de-intercalated from the V-O skeleton,which proves that the embeddedness of PPyd improves the diffusion kinetics of Zn^(2+).Electrochemical studies have shown that VO-PPyd cathode materials exhibit excellent rate performance(high specific capacity of 465 and 192 mA h g^(-1)at 0.2 and 10 A g^(-1),respectively)and long-term cycling performance(92.7%capacity retention rate after 5300 cycles),due to their advantages in structure and composition.More importantly,the energy density of VO-PPyd//Zn at 581 and 5806 W kg^(-1)is 375 and 247 W h kg^(-1),respectively.VO-PPyd exhibits excellent electrochemical properties compared to previously reported vanadium based cathodes,which makes it highly competitive in the field of high-performance cathode materials of AZIBs. 展开更多
关键词 V_(3)O_(7)·H_(2)O POLYPYRIDINE ion migration Electrical conductivity Aqueous zinc ion batteries DFT calculation
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Half-integer Shapiro steps in MgB_(2) focused He ion beam Josephson junctions
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作者 殷大利 蔡欣炜 +5 位作者 徐铁权 孙瑞宁 韩颖 张焱 王越 甘子钊 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第8期483-489,共7页
Half-integer microwave induced steps(Shapiro steps)have been observed in many different Josephson junction systems,which have attracted a lot of attention because they signify the deviation of current phase relation(C... Half-integer microwave induced steps(Shapiro steps)have been observed in many different Josephson junction systems,which have attracted a lot of attention because they signify the deviation of current phase relation(CPR)and uncover many unconventional physical properties.In this article,we first report the discovery of half-integer Shapiro steps in MgB_(2)focused He ion beam(He-FIB)Josephson junctions.The half-integer steps'dependence on microwave frequency,temperature,microwave power,and magnetic field is also analyzed.We find that the existence of half-integer steps can be controlled by the magnetic field periodically,which is similar to that of high temperature superconductor(HTS)grain boundary junctions,and the similarity of the microstructures between gain boundary junctions and He-FIB junctions is discussed.As a consequence,we mainly attribute the physical origin of half-integer steps in MgB_(2)He-FIB junctions to the model that a He-FIB junction is analogous to a parallel junctions'array.Our results show that He-FIB technology is a promising platform for researching CPR in junctions made of different superconductors. 展开更多
关键词 Josephson junction half-integer Shapiro steps MgB_(2) focused helium ion beam
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An efficient strategy for the preparation of MIL-53(Al)-NH_(2)membranes with high ion selectivity and desalination performance
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作者 Wenmin Li Zheng Liu +4 位作者 Xingya Li Rongqiang Fu Zhaoming Liu Tingting Xu Tongwen Xu 《中国科学技术大学学报》 CAS CSCD 北大核心 2024年第6期41-47,I0010,共8页
The efficient extraction of sodium(Na^(+))and lithium(Li^(+))from seawater and salt lakes is increasingly demanding due to their great application value in chemical industries.However,coexisting cations such as divale... The efficient extraction of sodium(Na^(+))and lithium(Li^(+))from seawater and salt lakes is increasingly demanding due to their great application value in chemical industries.However,coexisting cations such as divalent calcium(Ca^(2+))and magnesium(Mg^(2+))ions are at the subnanometer scale in diameter,similar to target monovalent ions,making ion separation a great challenge.Here,we propose a simple and fast secondary growth method for the preparation of MIL-53(Al)-NH_(2)membranes on the surface of anodic aluminum oxide.Such membranes contain angstrom-scale(~7Å)channels for the entrance of small monovalent ions and water molecules,endowing the selectivities for monovalent cations over divalent cations and water over salt molecules.The resulting high-connectivity MIL-53(Al)-NH_(2)membranes exhibit excellent ion separation performance(a selectivity of 121.42 for Na^(+)/Ca^(2+)and 93.81 for Li^(+)/Mg^(2+))and desalination performance(a water/salt selectivity of up to 5196).This work highlights metal–organic framework membranes as potential candidates for realizing ion separation and desalination in liquid treatment. 展开更多
关键词 metal-organic framework MIL-53(Al)-NH_(2) MEMBRANE ion selectivity DESALINATion
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Carrageenan Fiber Prepared by a New Process Route of Ba^(2+)Ion Pre-Crosslinking in the Spinning Solution
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作者 Liting Jia Xiao Han +3 位作者 Cuixia Qiao Gang Zhao Yanzhi Xia Zhixin Xue 《Journal of Renewable Materials》 EI CAS 2024年第3期427-441,共15页
Ba^(2+)pre-crosslinked carrageenan fiber(Ba/CAF)was prepared by adding a small amount of Ba^(2+) to the carrageenan(CA)solution as the spinning solution.Ba/CAF-n/A,Ba/CAF-n/B and Ba/CAF-n/C were prepared with ethanol ... Ba^(2+)pre-crosslinked carrageenan fiber(Ba/CAF)was prepared by adding a small amount of Ba^(2+) to the carrageenan(CA)solution as the spinning solution.Ba/CAF-n/A,Ba/CAF-n/B and Ba/CAF-n/C were prepared with ethanol solution(combine A),high concentration BaCl_(2)solution(combine B)and low concentration BaCl_(2)solution(combine C),as coagulation bath and stretch bath,respectively.The combination of coagulation bath and stretch bath suitable for Ba^(2+) pre-crosslinking wet spinning was screened.The results showed that Ba^(2+) can induce the birefringence of the CA molecular chain,and the Ba^(2+) pre-crosslinking effect is the best when the CA mass fraction is 8.0 wt%.From the perspective of production safety,fiber performance and spinning cost,the coagulation bath of 3.5 wt%BaCl_(2)solution and stretch bath of 1.7 wt%BaCl_(2)solution,that is,combination C with low concentration BaCl_(2)solution,is the best choice.Ba/CAF-8.0/C was obtained under the best conditions.The linear intensity,water absorption and flame retardancy study showed that the breaking strength of Ba/CAF-8.0/C is as high as 1.61 cN/dtex,the water absorption was 649.2%and 574.3%,in deionized water and normal saline,respectively,and the LOI value reached 32. 展开更多
关键词 Carrageenan fiber Ba^(2+)ion pre-crosslinking wet spinning flame retardancy
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植物生长照明用La_(2)Mg_(4/3)Sb_(2/3)O_(6)∶Mn^(4+)红色荧光粉的制备及光谱特性
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作者 宋明君 于殿臣 +2 位作者 王晶 周薇薇 赵旺 《人工晶体学报》 CAS 北大核心 2024年第10期1759-1768,共10页
采用传统高温固相法制备了一系列La_(2)Mg_(4/3)Sb_(2/3-x)O_(6)∶xMn^(4+)红色荧光粉,并对其结构、形貌和光谱特性进行了研究。研究结果表明:La_(2)Mg_(4/3)Sb_(2/3)O_(6)与La_(2)Mg_(4/3)Nb_(2/3)O_(6)具有相同的双钙钛矿结构,Mn^(4+... 采用传统高温固相法制备了一系列La_(2)Mg_(4/3)Sb_(2/3-x)O_(6)∶xMn^(4+)红色荧光粉,并对其结构、形貌和光谱特性进行了研究。研究结果表明:La_(2)Mg_(4/3)Sb_(2/3)O_(6)与La_(2)Mg_(4/3)Nb_(2/3)O_(6)具有相同的双钙钛矿结构,Mn^(4+)掺杂对荧光粉的结构没有影响。La_(2)Mg_(4/3)Sb_(2/3-x)O_(6)∶xMn^(4+)荧光粉在360与510 nm处有两个较宽的激发峰,分别对应Mn^(4+)的^(4)A_(2g)→^(2)T_(2g)与^(4)A_(2g)→^(4)T_(2g)跃迁。在360 nm激发下,La_(2)Mg_(4/3)Sb_(2/3-x)O_(6)∶xMn^(4+)荧光粉在710 nm处呈现出较强的红光发射峰,对应Mn^(4+)的^(2)E_(g)→^(4)A_(2g)跃迁发射。Mn^(4+)在La_(2)Mg_(4/3)Sb_(2/3)O_(6)基质中的最佳掺杂浓度为0.004,此时的量子效率高达89.6%,色纯度为99%。根据激发光谱和发射光谱分析了Mn^(4+)在La_(2)Mg_(4/3)Sb_(2/3)O_(6)基质中的晶体场强,并计算了晶体场参数D_(q)、B和C。结合Mn^(4+)的位型坐标图分析了La_(2)Mg_(4/3)Sb_(2/3-x)O_(6)∶xMn^(4+)荧光粉的温度猝灭过程,计算得到其激活能为0.355 eV。最后,对比了La_(2)Mg_(4/3)Sb_(2/3-x)O_(6)∶xMn^(4+)荧光粉的发射光谱与植物光敏色素红外吸收型(P_(R))、远红外吸收型(P_(FR))的吸收光谱,并初步评估了其在LED植物照明领域的应用前景。 展开更多
关键词 植物生长照明 红色荧光粉 双钙钛矿 La_(2)Mg_(4/3)Sb_(2/3-x)O_(6)∶x Mn^(4+) 光谱特性 Mn^(4+)掺杂 热稳定性
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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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