科研成果

2019
Wu C, Wang D, Zhang Y, Gu F, Liu C, Zhu N, Luo W, Han D, Guo X, Qu B, et al. FAPbI(3) Flexible Solar Cells with a Record Efficiency of 19.38% Fabricated in Air via Ligand and Additive Synergetic Process. ADVANCED FUNCTIONAL MATERIALS. 2019;29.Abstract
Compared with silicon-based solar cells, organic-inorganic hybrid perovskite solar cells (PSCs) possess a distinct advantage, i.e., its application in the flexible field. However, the efficiency of the flexible device is still lower than that of the rigid one. First, it is found that the dense formamidinium (FA)-based perovskite film can be obtained with the help of N-methyl-2-pyrrolidone (NMP) via low pressure-assisted method. In addition, CH3NH3Cl (MACl) as the additive can preferentially form MAPbCl(3-)(x)I(x) perovskite seeds to induce perovskite phase transition and crystal growth. Finally, by using FAI center dot PbI2 center dot NMP+x%MACl as the precursor, i.e., ligand and additive synergetic process, a FA-based perovskite film with a large grain size, high crystallinity, and low trap density is obtained on a flexible substrate under ambient conditions due to the synergetic effect, e.g., MACl can enhance the crystallization of the intermediate phase of FAI center dot PbI2 center dot NMP. As a result, a record efficiency of 19.38% in flexible planar PSCs is achieved, and it can retain about 89% of its initial power conversion efficiency (PCE) after 230 days without encapsulation under ambient conditions. The PCE retains 92% of the initial value after 500 bending cycles with a bending radii of 10 mm. The results show a robust way to fabricate highly efficient flexible PSCs.
Wu C, Wang D, Zhang Y, Gu F, Liu C, Zhu N, Luo W, Han D, Guo X, Qu B, et al. FAPbI(3) Flexible Solar Cells with a Record Efficiency of 19.38% Fabricated in Air via Ligand and Additive Synergetic Process. ADVANCED FUNCTIONAL MATERIALS. 2019;29.Abstract
Compared with silicon-based solar cells, organic-inorganic hybrid perovskite solar cells (PSCs) possess a distinct advantage, i.e., its application in the flexible field. However, the efficiency of the flexible device is still lower than that of the rigid one. First, it is found that the dense formamidinium (FA)-based perovskite film can be obtained with the help of N-methyl-2-pyrrolidone (NMP) via low pressure-assisted method. In addition, CH3NH3Cl (MACl) as the additive can preferentially form MAPbCl(3-)(x)I(x) perovskite seeds to induce perovskite phase transition and crystal growth. Finally, by using FAI center dot PbI2 center dot NMP+x%MACl as the precursor, i.e., ligand and additive synergetic process, a FA-based perovskite film with a large grain size, high crystallinity, and low trap density is obtained on a flexible substrate under ambient conditions due to the synergetic effect, e.g., MACl can enhance the crystallization of the intermediate phase of FAI center dot PbI2 center dot NMP. As a result, a record efficiency of 19.38% in flexible planar PSCs is achieved, and it can retain about 89% of its initial power conversion efficiency (PCE) after 230 days without encapsulation under ambient conditions. The PCE retains 92% of the initial value after 500 bending cycles with a bending radii of 10 mm. The results show a robust way to fabricate highly efficient flexible PSCs.
Huang T-J, Yin L-Z, Shuang Y, Liu J-Y, Tan Y, Liu* P-K. Far-Field Subwavelength Resolution Imaging by Spatial Spectrum Sampling. Physical Review Applied. 2019;12:034046.
Gou X, Zou L, Zhao C, Yang T. Fast and Accurate Graph Stream Summarization, in 35th IEEE International Conference on Data Engineering, ICDE 2019, Macao, China, April 8-11, 2019.; 2019:1118–1129. link
Gou X, Zou L, Zhao C, Yang T. Fast and accurate graph stream summarization, in IEEE ICDE.; 2019:1118–1129.
Yang T, Jiang J, Zhou Y, He L, Li J, Cui B, Uhlig S, Li X. Fast and accurate stream processing by filtering the cold. The VLDB Journal. 2019;28:735–763.
Lu K, Fuchs H, Hofzumahaus A, Tan Z, Wang H, Zhang L, Schmitt SH, Rohrer F, Bohn B, Broch S, et al. Fast Photochemistry in Wintertime Haze: Consequences for Pollution Mitigation Strategies. Environmental Science & Technology. 2019;53(18):10676-10684.Abstract
In contrast to summer smog, the contribution of photochemistry to the formation of winter haze in northern mid-to-high latitude is generally assumed to be minor due to reduced solar UV and water vapor concentrations. Our comprehensive observations of atmospheric radicals and relevant parameters during several haze events in winter 2016 Beijing, however, reveal surprisingly high hydroxyl radical oxidation rates up to 15 ppbv/h, which is comparable to the high values reported in summer photochemical smog and is two to three times larger than those determined in previous observations during winter in Birmingham (Heard et al. Geophys. Res. Lett. 2004, 31, (18)), Tokyo (Kanaya et al. J. Geophys. Res.: Atmos. 2007, 112, (D21)), and New York (Ren et al. Atmos. Environ. 2006, 40, 252–263). The active photochemistry facilitates the production of secondary pollutants. It is mainly initiated by the photolysis of nitrous acid and ozonolysis of olefins and maintained by an extremely efficiently radical cycling process driven by nitric oxide. This boosted radical recycling generates fast photochemical ozone production rates that are again comparable to those during summer photochemical smog. The formation of ozone, however, is currently masked by its efficient chemical removal by nitrogen oxides contributing to the high level of wintertime particles. The future emission regulations, such as the reduction of nitrogen oxide emissions, therefore are facing the challenge of reducing haze and avoiding an increase in ozone pollution at the same time. Efficient control strategies to mitigate winter haze in Beijing may require measures similar as implemented to avoid photochemical smog in summer.
Lu K, Fuchs H, Hofzumahaus A, Tan Z, Wang H, Zhang L, Schmitt SH, Rohrer F, Bohn B, Broch S, et al. Fast Photochemistry in Wintertime Haze: Consequences for Pollution Mitigation Strategies. Environmental Science & Technology [Internet]. 2019. 访问链接
Sun Z, Pedretti G, Ielmini D. Fast Solution of Linear Systems with Analog Resistive Switching Memory (RRAM). 2019 IEEE International Conference on Rebooting Computing (ICRC) [Internet]. 2019. 访问链接
Yang T, Zhang H, Wang H, Shahzad M, Liu X, Xin Q, Li X. FID-sketch: an accurate sketch to store frequencies in data streams. World Wide Web Journal. 2019;22:2675–2696.
Yang T, Zhang H, Yang D, Huang Y, Li X. Finding Significant Items in Data Streams, in IEEE ICDE.; 2019.
Wang L, Yang T, Wang H, Jiang J, Cai Z, Cui B, Li X. Fine-grained probability counting for cardinality estimation of data streams. World Wide Web Journal. 2019;22:2065–2081.
Akiyama K, others. First M87 Event Horizon Telescope Results. I. The Shadow of the Supermassive Black Hole. Astrophys. J. Lett. 2019;875:L1.
Qin Y, Mueller ND, Siebert S, Jackson RB, AghaKouchak A, Zimmerman JB, Tong D, Hong CP, Davis SJ. Flexibility and intensity of global water use. Nature Sustainability (Nature Research Highlights). [Internet]. 2019;2:515-523. 访问链接
Qi M, Du W, Zhu X, Wang W, Lu C, Chen Y, Shen G, Cheng H, Zeng EY, Tao S. Fluctuation in time-resolved PM2.5 from rural households with solid fuel-associated internal emission sources. Environmental Pollution [Internet]. 2019;244:304-313. 访问链接
Ge Q, Peng P, Xu Z, Zou L, Qin Z. FMQO: A Federated RDF System Supporting Multi-query Optimization, in Web and Big Data - Third International Joint Conference, APWeb-WAIM 2019, Chengdu, China, August 1-3, 2019, Proceedings, Part II.; 2019:397–401. link
Marrero-Ortiz W, Hu M, Du ZF, Ji YM, Wang YJ, Guo S, Lin Y, Gomez-Hermandez M, Peng JF, Li YX, et al. Formation and Optical Properties of Brown Carbon from Small alpha-Dicarbonyls and Amines. Environmental Science & Technology. 2019;53:117-126.Abstract
Brown Carbon (BrC) aerosols scatter and absorb solar radiation, directly affecting the Earth's radiative budget. However, considerable uncertainty exists concerning the chemical mechanism leading to BrC formation and their optical properties. In this work, BrC particles were prepared from mixtures of small alpha-dicarbonyls (glyoxal and methylglyoxal) and amines (methylamine, dimethylamine, and trimethylamine). The absorption and scattering of BrC particles were measured using a photoacoustic extinctometer (405 and 532 nm), and the chemical composition of the alpha-dicarbonyl-amine mixtures was analyzed using orbitrap-mass spectrometry and thermal desorption-ion drift-chemical ionization mass spectrometry. The single scattering albedo for methylglyoxal-amine mixtures is smaller than that of glyoxal-amine mixtures and increases with the methyl substitution of amines. The mass absorption cross-section for methylglyoxal-amine mixtures is two times higher at 405 nm wavelength than that at 532 nm wavelength. The derived refractive indexes at the 405 nm wavelength are 1.40-1.64 for the real part and 0.002-0.195 for the imaginary part. Composition analysis in the alpha-dicarbonyl-amine mixtures reveals N-heterocycles as the dominant products, which are formed via multiple steps involving nucleophilic attack, steric hindrance, and dipole dipole interaction between alpha-dicarbonyls and amines. BrC aerosols, if formed from the particle-phase reaction of methylglyoxal with methylamine, likely contribute to atmospheric warming.
Marrero-Ortiz W, Hu M*, Du Z, Ji Y, Wang Y, Guo S, Lin Y, Gomez-Hermandez M, Peng JF, Li Y, et al. Formation and Optical Properties of Brown Carbon from Small α‑Dicarbonyls and Amines. Environ. Sci. Technol. [Internet]. 2019;53:117−126. 访问链接
Wang C, Li S, Xia W, Sun J, Xie G. Formation control for multiple agents with local measurements: continuous-time and sampled-data-based cases, in 2019 IEEE 58th Conference on Decision and Control (CDC). IEEE; 2019:1862–1867. 访问链接
Wang Y, Hu M*, Wang Y, Zheng J, Shang D, Yang Y, Liu Y, Li X, Tang R, Zhu W, et al. The formation of nitro-aromatic compounds under high NOx and anthropogenic VOC conditions in urban Beijing, China. ATMOSPHERIC CHEMISTRY AND PHYSICS [Internet]. 2019;19(11):7649-7665. 访问链接

Pages