|
|
|
题名
|
作者
|
年代
|
出处
|
被引量
|
| 1 | Preparation and self-assembly of amphiphilic polymer with aggregation-induced emission characteristics显示文摘An amphiphilic polymer bearing tetraphenylethene (TPE) moiety was synthesized by convenient reactions. The polymer exhibits unique aggregation-induced emission (AIE) characteristics and can self-assemble to size-tunable particles in DMF/water mixtures. The polymer nanoparticles can be used for cell imaging, which provides a potential stable fluorescent tool to monitor the distribution of drugs and bioconjugates in living cells. | QIN AnJun ZHANG Ya HAN Ning MEI Ju SUN JingZhi FAN WeiMin TANG Ben Zhong | 2012 | Science China Chemistry2012,55,5: | 16 |
| 2 | High-quality industrial n-type silicon wafers with an efficiency of over 23% for Si heterojunction solar cells显示文摘展示更长的少数搬运人一生和某些金属污染的更高的忍耐的 n 类型 CZ-Si 晶片能提供最好的基于 Si 的太阳能电池之一。在这研究,在顶与不同晶片被制作的 Si heterojuction ( SHJ )太阳能电池,中间和铸块锭的尾巴位置,展出了稳定的高效率>22%尽管有抵抗力和一生的各种各样的侧面,它表明了n类型铸块锭的高材料利用。为有效地把日光变换成电力,另外,金字塔尺寸,金字塔密度和 Cz-Si 晶片的表面的粗糙被扫描电子显微镜(SEM ) 和传播电子显微镜(TEM ) 调查。而且, SHJ 太阳能电池的依赖表面地形学上的开电路的电压被讨论,它显示表面金字塔的一致性帮助改进开电路的电压和变换效率。而且,模拟表明 SHJ 太阳能电池的最高的效率能被晶片与 100 m 的厚度完成。幸好,有 100 m 的晶片厚度的 SHJ 太阳能电池的超过 23% 变换效率在飞行员生产线基于房间制造过程的系统的优化被获得。显然,两 n 类型铸块锭的大可获得性和更薄的晶片强烈支持了高效率 SHJ 太阳能电池的更低的费用制造。 | Fanying MENG Jinning LIU Leilei SHEN Jianhua SHI Anjun HAN Liping ZHANG Yucheng LIU Jian YU Junkai ZHANG Rui ZHOU Zhengxin LIU | 2017 | Frontiers in Energy2017,11,1: | 3 |
| 3 | Numerical investigation of transient heat transfer characteristics and vitrification tendencies in ultra-fast cell cooling processes 显示文摘 | Jiao Anjun Han Xu Critser John K | 2006 | Cryobiology2006,52,: | 1 |
| 4 | Lab-in-cell based on spontaneous amino-yne click polymerization显示文摘Unnatural reaction in the living cells is a powerful tool for biological research. However, the polymerization inside cells is rarely reported. In this work, a lab-in-cell is illustrated based on our developed spontaneous amino-yne click polymerization. Carbonyl group activated terminal diyne can spontaneously polymerize with tetraphenylethene(TPE)-containing primary diamine inside cells, and polymer with weight-average molecular weight of 7,300 was yielded. By utilizing this in vivo amino-yne click polymerization and taking advantage of the aggregation-induced emission feature of TPE, a 'turn-on' cell imaging was realized,and in-situ killing of cells was also acquired by destroying the structures of actin and tubulin, which cannot be realized by preprepared polymer. This strategy provides a useful platform and holds great promise in biochemistry and therapy applications. | Rong Hu Xu Chen Taotao Zhou Han Si Benzhao He Ryan T. K. Kwok Anjun Qin Ben Zhong Tang | 2019 | Science China Chemistry2019,62,9: | 1 |
| 5 | Ki‐67, mini‐chromosome maintenance 2 protein ( MCM2 ) and geminin have no independent prognostic relevance for cancer‐specific survival in surgically treated squamous cell carcinoma of the penis显示文摘 | Matthias May Maximilian Burger Wolfgang Otto Oliver W. Hakenberg Wolf F. Wieland Dieter May Ferdinand Hofst?dter Stefanie G?tz Nina Niessl Hans‐Martin Fritsche Kristina Birnkammer Christian Gilfrich Julia Peter Anjun Jain Stefan Koch Steffen Lebentrau Hub | 2013 | BJU Int2013,,4: | 1 |
| 6 | Computational identification of microRNAs and their targets in wheat (Triticum aestivum L.)显示文摘microRNAs (miRNAs) are a class of endogenous, non-coding, short (~21 nt) RNAs directly involved in regulating gene expression at the post-transcriptional level. Previous reports have noted that plant miRNAs in the plant kingdom are highly conserved, which provides the foundation for identification of conserved miRNAs in other plant species through homology alignment. Conserved miRNAs in wheat are identified using EST (Expressed Sequence Tags) and GSS analysis. All previously known miRNAs in other plant species were blasted against wheat EST and GSS sequences to select novel miRNAs in wheat by a series of filtering criteria. From a total of 37 conserved miRNAs belonging to 18 miRNA families 10 conserved miRNAs comprising 4 families were reported in wheat. MiR395 is found to be a special family, because three members belonging to the same miR395 family are clustered together, similar to animal miRNAs. MiRNA targets are transcription factors involved in wheat growth and development, metabolism,and stress responses. | HAN YouSheng, LUAN FuLei, ZHU HongLiang, SHAO Yi, CHEN AnJun, LU ChengWen, LUO YunBo & ZHU BenZhong Laboratory of Fruit Biotechnology, College of Food Science and Nutritional Engineering, China Agricultural University, Beijing 100083, China | 2009 | Science China(Life Sciences)2009,52,11: | 1 |
| 7 | A Silole-Based Efficient Electroluminescent Material with Good Electron-Transporting Potential显示文摘新 silole 衍生物, 2,5 二度(7-(dimesitylboranyl )-9,9-dimethylfluoren-2-yl)-1-methyl-1,3,4-triphenylsilole ((MesBF )2 MTPS ) ,被综合并且描绘。(MesBF )2 MTPS 在稳固的电影在 THF 答案和 86% 的更高的效率显示出 15% 的好荧光效率,介绍一个提高聚集的排放特征。它分别地是热地并且词法上稳定的,与高分解和 257 和 171 °C 的眼镜转变温度。LUMO 精力水平(−2.96 eV )(MesBF )2 MTPS 比的低 TPBi,揭示它的搬运电子的潜力。有效器官的轻射出的二极管(OLED ) 被制作用(MesBF )2 是的 MTPS emitter,它在 554 nm 散发黄光,并且负担得起高最大的发光性,当前的效率,和外部量 48348 cd·m −2, 的效率 12.3 cd·A −1, 并且 4.1% 分别地。 | Changyun QuanI Han Nie Rongrong Hu Anjun Qin Zujin Zhao Ben Zhong Tang | 2015 | Chinese Journal of Chemistry2015,33,8: | 1 |
| 8 | Investigations onthe heat transport capability of a cryogenic oscillatingheat pipe and its application in achieving ultra - fastcooling rates for cell vitrification cryopreservation显示文摘 | Xu Han Hongbin Ma Anjun Jiao | 2008 | Cryobiology2008,56,: | 1 |
| 9 | Numerical investigations of transient heat transfer characteristics and vitrification tendencies in ultra-fast cell cooling processes显示文摘 | Anjun Jiao Xu Han John K. Critser Hongbin Ma | 2006 | Cryobiology2006,,3: | 1 |
| 10 | Investigations on the heat transport capability of a cryogenic oscillating heat pipe and its application in achieving ultra-fast cool- ing rates for cell vitrification cryopreservation 显示文摘 | Han Xu Ma Hongbin Jiao Anjun | 2008 | Cryo- biology2008,56,3: | 1 |
| 11 | Ultralong organic room-temperature phosphorescence of electrondonating and commercially available host and guest molecules through efficient Förster resonance energy transfer显示文摘Ultralong organic room-temperature phosphorescence(RTP)materials have attracted tremendous attention recently due to their diverse applications.Several ultralong organic RTP materials mimicking the host-guest architecture of inorganic systems have been exploited successfully.However,complicated synthesis and high expenditure are still inevitable in these studies.Herein,we develop a series of novel host-guest organic phosphorescence systems,in which all luminophores are electron-rich,commercially available and halogen-atom-free.The maximum phosphorescence efficiency and the longest lifetime could reach 23.6%and 362 ms,respectively.Experimental results and theoretical calculation indicate that the host molecules not only play a vital role in providing a rigid environment to suppress non-radiative decay of the guest,but also show a synergistic effect to the guest through Förster resonance energy transfer(FRET).The commercial availability,facile preparation and unique properties also make these new host-guest materials an excellent candidate for the anti-counterfeiting application.This work will inspire researchers to develop new RTP systems with different wavelengths from commercially available luminophores. | Yeling Ning Junfang Yang Han Si Haozhong Wu Xiaoyan Zheng Anjun Qin Ben Zhong Tang | 2021 | Science China Chemistry2021,64,5: | 1 |
| 12 | 3,4,5-Triphenyl-1,2,4-triazole-based multifunctional n-type AIEgen显示文摘The luminogens with aggregation-induced emission(AIEgens) characteristics have been widely applied in diverse areas. However,the n-type AIEgens are to be further developed. In this paper, we designed and synthesized an n-type multifunctional AIEgen of tetraphenylethene-substituted 3,4,5-triphenyl-4H-1,2,4-triazole(BTPE-TAZ). This AIEgen can serve as both light-emitting and electron-transporting layers in organic light-emitting devices. Moreover, it also exhibits the interesting optical waveguide and reversible mechanochromic luminescence properties, which are of great potential for practical applications. | Yang Shi Yuanjing Cai Yi Jia Wang Ming Chen Han Nie Wei Qin Haoke Zhang Jing Zhi Sun Anjun Qin Ben Zhong Tang | 2017 | Science China Chemistry2017,60,5: | 1 |
| 13 | Structural Controls of Tetraphenylbenzene-based AIEgens for Non-doped Deep Blue Organic Light-emitting Diodes显示文摘Aggregation-induced emission(AIE)has emerged as a new concept,giving highly efficient solid-state photoluminescence.Particularly,AIE luminogens(AIEgens)with deep blue emission(400–450 nm)have displayed salient advantages for non-doped organic light-emitting diodes(OLEDs).However,deep blue emitters with Commission Internationale de L’Eclairage(CIE)coordinates less than 0.08 are still rare.In this review,we outline the latest achievements in the molecular guidelines based on the AIE core of tetraphenylbenzene(TPB)for developing efficient deep blue AIEgens.We provide insights into the construction of deep blue emitters with high horizontal orientation by regulating the length of the linear molecule.We also discuss the luminescence mechanisms of these AIEgens-based OLEDs by using the magnetic field effects measurements.Finally,a summary of the challenges and perspectives of deep blue AIEgens for non-doped OLEDs is also presented. | HAN Pengbo QIN Anjun | 2021 | Chemical Research in Chinese Universities2021,37,1: | 0 |
| 14 | Highly Emissive Luminogens in Both Solution and Aggregate States显示文摘Organic light-emitting materials have attracted considerable attention because of their promising applications in diverse areas.Most fluorophores emit brightly in either dilute solutions or aggregate states;the former generally suffer from aggregation-caused quenching problem,and the latter encounter intensity loss at low concentrations.Herein,we propose a new strategy to overcome these dilemmas by balancing the planar and distorted structures of terphenyl-based luminogens and obtain three luminogens,2PB-AC,2Me2PB-AC,and 2T2PB-AC,with bright emission in both solution and aggregate states.Among them,2PB-AC shows absolute photoluminescence quantum yields(ФPL)higher than 90%in both tetrahydrofuran solution(90.2%)and aggregate states(92.7%for powder and 95.3%for crystal).Thus,2PB-AC could be an efficient probe to realize dual-channel explosive detection in both solution and aggregate states.Moreover,it could be used to image live-cell lipid droplets at a wide range of concentrations.In addition,benefiting from its thermodynamically favorable intersystem crossing process,2Me2PB-AC could be doped in polymethyl methacrylate matrix to provide efficient room-temperature phosphorescence.Thus,this work provides a feasible strategy for the design of luminogens with highly efficient emission in both solution and aggregate states,greatly facilitating and broadening their practical applications. | Pengbo Han Guiquan Zhang Jia Wang Yejun Yao Yanping Qiu He Xu Anjun Qin Ben Zhong Tang | 2023 | CCS Chemistry2023,5,7: | 0 |
| 15 | Red fluorescent siloles with aggregation-enhanced emission characteristics显示文摘Aseries of new red fluorescent siloles consisting of a silole core and dimesitylboranyl substituent connected with a furan,thiophene,and selenophene bridges were synthesized and characterized.The optical properties,electronic structures,and electroluminescence (EL) performances were investigated.The emission wavelengths were red-shifted from the siloles with furan,to those with thiophene,and then selenophene.The thiophene,and selenophene-containing siloles,(MesB)_2DTTPS,and(MesB)_2DSTPS,showed the typical aggregation-enhanced emission (AEE) feature,while furan-containingone,(MesB)_2DFTPS,showed slight emission decrease as the aggregate formation.Theoretical calculations were carried out to explain the difference in the optical properties.Undoped OLEDs using these red siloles as light-emitting layers were fabricated.The device of (MesB)_2DTTPS exhibited the bestper formance.It radiated red ELemission at 589 nm,and afforded good maximum luminance,current,power,and external quantum efficiency of13300cdm^(-2),4.3cd A^(-1),2.9 lmW^(-1),and1.8%,respectively. | Bin Chen Han Nie Rongrong Hu Anjun Qin Zujin Zhao Ben-Zhong Tang | 2016 | Science China Chemistry2016,59,6: | 0 |
| 16 | A novel silver-doped nickel oxide hole-selective contact for crystalline silicon heterojunction solar cells显示文摘Based on its band alignment,p-type nickel oxide(NiO_(x))is an excellent candidate material for hole transport layers in crystalline silicon heterojunction solar cells,as it has a smallΔEV and largeΔEC with crystalline silicon.Herein,to overcome the poor hole selectivity of stoichiometric NiO_(x) due to its low carrier concentration and conductivity,silver-doped nickel oxide(NiO_(x):Ag)hole transport layers with high carrier concentrations were prepared by co-sputtering high-purity silver sheets and pure NiO_(x) targets.The improved electrical conductivity of NiO_(x) was attributed to the holes generated by the Ag^(+)substituents for Ni^(2+),and moreover,the introduction of Ag^(+)also increased the amount of Ni^(3+)present,both of which increased the carrier concentration in NiO_(x).Ag^(+)doping also reduced the c-Si/NiO_(x) contact resistivity and improved the hole-selective contact with NiO_(x).Furthermore,the problems of particle clusters and interfacial defects on the surfaces of NiO_(x):Ag films were solved by UV-ozone oxidation and high-temperature annealing,which facilitated separation and transport of carriers at the c-Si/NiO_(x) interface.The constructed c-Si/NiO_(x):Ag solar cell exhibited an increase in open-circuit voltage from 490 to 596 mV and achieved a conversion efficiency of 14.4%. | Junfeng Zhao Xudong Yang Zhongqing Zhang Shengpeng Xie Fangfang Liu Anjun Han Zhengxin Liu Yun Sun Wei Liu | 2024 | Frontiers of Chemical Science and Engineering2024,18,2: | 0 |