科研成果

2017
Wang W, Li Y, Wang X, Liu Y, Lv Y, Wang S, Wang K, Shi Y, Xiao L, Chen Z, et al. Interplay between Exciton and Free Carriers in Organolead Perovskite Films. SCIENTIFIC REPORTS. 2017;7.
Wang W, Li Y, Wang X, Liu Y, Lv Y, Wang S, Wang K, Shi Y, Xiao L, Chen Z, et al. Interplay between Exciton and Free Carriers in Organolead Perovskite Films. SCIENTIFIC REPORTS. 2017;7.Abstract
For highly interested organolead perovskite based solar cells, the exciton and free carriers are the photoproducts in the working layers. In this study, we revealed their two forms of relations depending on heat-annealing condition. In non-annealed films and single crystal, they are in density-dependent dynamical balance (co-existing). For the sufficiently heat-annealed films, they present a significant emissive exciton-carrier collision (ECC). The two relations indicate the emergence of a subgrain morphology within the tetragonal phase of crystal grain, induced by heat annealing process. Such subgrain structure could be assigned to a ferroelastic twinning structure recently found inside the crystal grain of the films. Since the heat annealing is a general procedure in preparing perovskite working layers, we propose that the ECC and subgrain morphology widely exist in real devices. We suggest that the subgrain structure provides another level of morphological basis for in depth understanding high performance of organolead perovskite working layers.
Wang W, Li Y, Wang X, Liu Y, Lv Y, Wang S, Wang K, Shi Y, Xiao L, Chen Z, et al. Interplay between Exciton and Free Carriers in Organolead Perovskite Films. SCIENTIFIC REPORTS. 2017;7.
and Zhang, Bo CZYCYHWTWYZJJWXXCK. Intra-continental transpression and gneiss doming in an obliquely convergent regime in SE Asia. Journal of Structural Geology. 2017;97:48–70.
de Wang S*, Loreau M AJFFRTMJKSC. An Invariability-Area Relationship sheds new light on the spatial scaling of ecological stability. Nature Communications [Internet]. 2017;8:15211. 访问链接Abstract
The spatial scaling of stability is key to understanding ecological sustainability across scales and the sensitivity of ecosystems to habitat destruction. Here we propose the invariability–area relationship (IAR) as a novel approach to investigate the spatial scaling of stability. The shape and slope of IAR are largely determined by patterns of spatial synchrony across scales. When synchrony decays exponentially with distance, IARs exhibit three phases, characterized by steeper increases in invariability at both small and large scales. Such triphasic IARs are observed for primary productivity from plot to continental scales. When synchrony decays as a power law with distance, IARs are quasilinear on a log–log scale. Such quasilinear IARs are observed for North American bird biomass at both species and community levels. The IAR provides a quantitative tool to predict the effects of habitat loss on population and ecosystem stability and to detect regime shifts in spatial ecological systems, which are goals of relevance to conservation and policy.
Yates L, Cheaito R, Sood A, Cheng Z, Bougher T, Asheghi M, Goodson K, Goorsky M, Faili F, Twitchen D. Investigation of the heterogeneous thermal conductivity in bulk CVD diamond for use in electronics thermal management. International Electronic Packaging Technical Conference and Exhibition. 2017;58097:V001T04A014.
Kaminski M, Fuchs H, Acir I-H, Bohn B, Brauers T, Dorn H-P, Haseler R, Hofzumahaus A, Li X, Lutz A, et al. Investigation of the β-pinene photooxidation by OH in the atmosphere simulation chamber SAPHIR. Atmospheric Chemistry and Physics. 2017;17(11):6631-6650.Abstract
Besides isoprene, monoterpenes are the non-methane volatile organic compounds (VOCs) with the highest global emission rates. Due to their high reactivity towards OH, monoterpenes can dominate the radical chemistry of the atmosphere in forested areas. In the present study the photochemical degradation mechanism of β-pinene was investigated in the Jülich atmosphere simulation chamber SAPHIR (Simulation of Atmospheric PHotochemistry In a large Reaction Chamber). One focus of this study is on the OH budget in the degradation process. Therefore, the SAPHIR chamber was equipped with instrumentation to measure radicals (OH, HO2, RO2), the total OH reactivity, important OH precursors (O3, HONO, HCHO), the parent VOC β-pinene, its main oxidation products, acetone and nopinone and photolysis frequencies. All experiments were carried out under low-NO conditions ( ≤  300 ppt) and at atmospheric β-pinene concentrations ( ≤  5 ppb) with and without addition of ozone. For the investigation of the OH budget, the OH production and destruction rates were calculated from measured quantities. Within the limits of accuracy of the instruments, the OH budget was balanced in all β-pinene oxidation experiments. However, even though the OH budget was closed, simulation results from the Master Chemical Mechanism (MCM) 3.2 showed that the OH production and destruction rates were underestimated by the model. The measured OH and HO2 concentrations were underestimated by up to a factor of 2, whereas the total OH reactivity was slightly overestimated because the model predicted a nopinone mixing ratio which was 3 times higher than measured. A new, theory-derived, first-generation product distribution by Vereecken and Peeters (2012) was able to reproduce the measured nopinone time series and the total OH reactivity. Nevertheless, the measured OH and HO2 concentrations remained underestimated by the numerical simulations. These observations together with the fact that the measured OH budget was closed suggest the existence of unaccounted sources of HO2. Although the mechanism of additional HO2 formation could not be resolved, our model studies suggest that an activated alkoxy radical intermediate proposed in the model of Vereecken and Peeters (2012) generates HO2 in a new pathway, whose importance has been underestimated so far. The proposed reaction path involves unimolecular rearrangement and decomposition reactions and photolysis of dicarbonyl products, yielding additional HO2 and CO. Further experiments and quantum chemical calculations have to be made to completely unravel the pathway of HO2 formation.
Han D, Wu C, Zhao Y, Chen Y, Xiao L, Zhao Z. Ion Implantation-Modified Fluorine-Doped Tin Oxide by Zirconium with Continuously Tunable Work Function and Its Application in Perovskite Solar Cells. ACS APPLIED MATERIALS & INTERFACES. 2017;9:42029-42034.Abstract
In recent years, perovskite solar cells have drawn a widespread attention. As an electrode material, fluorine-doped tin oxide (FTO) is widely used in various kinds of solar cells. However, the relatively low work function (WF) (similar to 4.6 eV) limits its application. The potential barrier between the transparent conductive oxide electrode and the hole transport layer (HTL) in inverted perovskite solar cells results in a decrease in device performance. In this paper, we propose a method to adjust WF of FTO by implanting zirconium ions into the FTO surface. The WF of FTO can be precisely and continuously tuned between 4.59 and 5.55 eV through different dopant concentration of zirconium. In the meantime, the modified FTO, which had a WF of 5.1 eV to match well the highest occupied molecular orbital energy level of poly(3,4-ethylenedioxylenethiophene):polystyrene sulfonate, was used as the HTL in inverted planar perovskite solar cells. Compared with the pristine FTO electrode-based device, the open circuit voltage increased from 0.82 to 0.91 V, and the power conversion efficiency increased from 11.6 to 14.0%.
Han D, Wu C, Zhao Y, Chen Y, Xiao L, Zhao Z. Ion Implantation-Modified Fluorine-Doped Tin Oxide by Zirconium with Continuously Tunable Work Function and Its Application in Perovskite Solar Cells. ACS APPLIED MATERIALS & INTERFACES. 2017;9:42029-42034.
Han D, Wu C, Zhao Y, Chen Y, Xiao L, Zhao Z. Ion Implantation-Modified Fluorine-Doped Tin Oxide by Zirconium with Continuously Tunable Work Function and Its Application in Perovskite Solar Cells. ACS APPLIED MATERIALS & INTERFACES. 2017;9:42029-42034.
Yang H(Master student), Song T, Song M, Wu X, Chen J *. An iOS-based speech audiometry for self-assessment of hearing status, in Proc. of the 1st Int. Conference on Challenges in Hearing Assistive Technology (CHAT-17). Stockholm, Sweden; 2017:45-49.
Qi Y, Zhang Z, Deng B, Zhou X, Li Q, Hong M, Li Y, Liu Z, Zhang Y. Irreparable Defects Produced by the Patching of h-BN Frontiers on Strongly Interacting Re(0001) and Their Electronic Properties. Journal of the American Chemical Society [Internet]. 2017;139:5849–5856. 访问链接Abstract
Clarifying the origin and the electronic properties of defects in materials is crucial since the mechanical, electronic and magnetic properties can be tuned by defects. Herein, we find that, for the growth of h-BN monolayer on Re(0001), the patching frontiers of different domains can be classified into three types, i.e., the patching of B- and N-terminated (B|N-terminated) frontiers, B|B-terminated frontiers and N|N-terminated frontiers, which introduce three types of defects, i.e., the “heart” shaped moiré-level defect, the nonbonded and bonded line defects, respectively. These defects were found to bring significant modulations to the electronic properties of h-BN, by introducing band gap reductions and in-gap states, comparing with perfect h-BN on Re(0001) with a band gap of ∼3.7 eV. The intrinsic binary composition nature of h-BN and the strong h-BN-Re(0001) interaction are proposed to be cooperatively responsible for the formation of these three types of defects. The former one provides different typ...
Xing Y, Zhao R, Shan PJ, Zheng FP, Zhang YW, Fu HL, Liu Y, Tian ML, Xi CY, Liu HW, et al. Ising Superconductivity and Quantum Phase Transition in Macro-Size Monolayer NbSe2. Nano Letters [Internet]. 2017;17:6802-6807. 访问链接
Fu X, Yan P. Issues Paper on Building digital competencies to benefit from existing and emerging technologies with special focus on gender and youth dimensions. UNCTAD, Secretariat Meeting Report; 2017.
An iteration method for computing the total number of spanning trees and its applications in graph theory. Theoretical Computer Science [Internet]. 2017. 访问链接
Juan J, Jiang X, Tang X, Wu YQ, Sun KX, Xiang X, Tian YH, Wu T, Sun Q, Kraft P, et al. Joint Effects of PON1 Polymorphisms and Vegetable Intake on Ischemic Stroke: A Family-Based Case Control Study. International Journal of Molecular Sciences. 2017;18:11.Abstract
Paraoxonase 1 gene (PON1) polymorphisms and dietary vegetable and fruit intake are both established determinants of ischemic stroke (IS). However, little is known about whether these factors jointly influence the risk of IS. We analyzed the main effects of PON1, as well as the interactions between PON1 and dietary vegetable or fruit intake with the risk of total IS and its subtypes in a family-based case-control study conducted among 2158 Chinese participants (1007 IS cases and 1151 IS-free controls) from 918 families. Conditional logistic regression models, with each family as a stratum, were used to examine the association between rs662 and IS. Gene-diet interactions were tested by including a cross-product term of dietary vegetable or fruit intake by rs662_G allele count in the models. Each copy of the PON1 rs662_G allele was associated with 28% higher risk of total IS (p = 0.008) and 32% higher risk of large artery atherosclerosis subtype (LAA) (p = 0.01). We observed an interaction between rs662 and vegetable intake for both total IS (p = 0.006) and LAA (p = 0.02) after adjustment for covariates. Individuals who carry the rs662_A allele may benefit to a greater extent from intake of vegetables and thus be more effectively protected from ischemic stroke, whereas carriers of the G allele may still remain at greater risk for ischemic stroke due to their genetic backgrounds even when they consume a high level of vegetables. More studies are needed to replicate our findings among other populations.
Zhou L, Zhang C, Karimi IA, Kraft M. J-Park Simulator, an intelligent system for information management of eco-industrial parks. Proceedings of the 9th International Conference on Applied Energy [Internet]. 2017;142:2953–2958. 访问链接Abstract
This paper presents new insights into constructing a cyber-infrastructure system, called J-Park Simulator, for the resource and energy management of eco-industrial parks. The concept of Industry 4.0 is applied to develop the system. Advanced information modeling and managing technology – ontology technology is introduced to build the knowledge base for J-Park Simulator, which delivers a decentralized information managing system. The system allows information of the individual entities been managed locally by the entity themselves, in the meanwhile facilitates information sharing via the Internet and/or intranet. A bottom-up object-oriented approach is adopted to partition and organize information of the complex eco-industrial park. The proposed work addresses key issues in computer-aided design and operation of eco-industrial parks in the context of realizing Industry 4.0.
Mittal S, Dai* H, Fujimori S, Hanaoka T, Zhang R. Key factors influencing the global passenger transport dynamics using the AIM/Transport model. Transportation Research Part D: Transport and Environment [Internet]. 2017;55:373 - 388. 访问链接
Shi W, Zheng W, Yu JX, Cheng H, Zou L. Keyphrase Extraction Using Knowledge Graphs. Data Science and Engineering. 2017;2:275–288.
Tao M, Wang M, Wen CP, Wang J, Hao Y, Wu W, Cheng K, Shen B. Kilovolt GaN MOSHEMT on silicon substrate with breakdown electric field close to the theoretical limit, in 2017 29th International Symposium on Power Semiconductor Devices and ICs (ISPSD). Proceedings.; 2017:93-6.Abstract
This work reports a kilovolt and low current collapse normally-off GaN MOSHEMT on silicon substrate. The device with a drift length of 3 mum features a threshold voltage of 1.7 V and an output current of 430 mA/mm at 8 V gate bias. The off-state breakdown voltage (BV) is as high as 1021 V (800 V) defined at a drain leakage criterion of 10 muA/mm with floating (grounded) substrate. The corresponding breakdown electric field is 3.4 MV/cm and the Baliga's figure-of-merit (BFOM) is 1.6 GW/cm2. A small degradation of the dynamic on-resistance (Ron, d) about 30% is observed with a short pulse width of 500 ns and a quiescent drain bias of 60 V. The record value is supposed to benefit from the intrinsic step-graded field plate, high quality LPCVD Si3N4 passivation and material optimization of 4.5 mum thick epitaxial layer.

Pages