科研成果

2024
Qiu Y, Ma Y, Wu M, Jia Y, Qu X, Zhou Z, Lou J, Jia T, Ye L, HUANG R. Quartet: A 22nm 0.09mJ/inference digital compute-in-memory versatile AI accelerator with heterogeneous tensor engines and off-chip-less dataflow, in IEEE Custom Integrated Circuit Conference (CICC).; 2024.
Qiu Y, Ma* Y, Wu M, Jia Y, Qu X, Zhou Z, Lou J, Jia T, Ye L, HUANG R. Quartet: A 22nm 0.09mJ/lnference Digital Compute-in-Memory Versatile AI Accelerator with Heterogeneous Tensor Engines and Off-Chip-Less Dataflow. IEEE Custom Integrated Circuits Conference (CICC) [Internet]. 2024. Links
Yuan CL; WL; Y. The quiet revolution: Send-down movement and female empowerment in China. Journal of Development Economics [Internet]. 2024;172(103379). 访问链接Abstract
What promotes female empowerment and gender equality? We investigate how internal population mobility and social interaction foster the advancement of female empowerment and gender equality across diverse subpopulations. Using the urban-to-rural youth resettlement program in China during the 1970s — the Send-down Movement — as our empirical context, we find that rural females with greater exposure to urban youths have achieved higher levels of education, increased labor force participation, greater financial independence, enhanced autonomy in marital and fertility decisions, increased political engagement, heightened self-confidence, reduced risk aversion, and a stronger belief in gender-equal ideologies and social values. Our findings underscore the role of population mobility in disseminating gender-equal ideologies and practices, both through human capital formation and social interactions, leading to lasting impacts on female empowerment in traditional societies.
Li Y, Ye C, Ma X, Tan Z, Yang X, Zhai T, Liu Y, Lu K, Zhang Y. Radical chemistry and VOCs-NOx-O3-nitrate sensitivity in the polluted atmosphere of a suburban site in the North China Plain. Science of The Total Environment [Internet]. 2024;947:174405. 访问链接Abstract
In this study, the chemical mechanisms of O3 and nitrate formation as well as the control strategy were investigated based on extensive observations in Tai'an city in the NCP and an observation-constrained box model. The results showed that O3 pollution was severe with the maximum hourly O3 concentration reaching 150 ppb. Higher O3 concentration was typically accompanied by higher PM2.5 concentrations, which could be ascribed to the common precursors of VOCs and NOx. The modeled averaged peak concentrations of OH, HO2, and RO2 were relatively higher compared to previous observations, indicating strong atmospheric oxidation capacity in the study area. The ROx production rate increased from 2.8 ppb h−1 to 5 ppb h−1 from the clean case to the heavily polluted case and was dominated by HONO photolysis, followed by HCHO photolysis. The contribution of radical-self combination to radical termination gradually exceeded NO2 + OH from clean to polluted cases, indicating that O3 formation shifted to a more NOx-limited regime. The O3 production rate increased from 14 ppb h−1 to 22 ppb h−1 from clean to heavily polluted cases. The relative incremental reactivity (RIR) results showed that VOCs and NOx had comparable RIR values during most days, which suggested that decreasing VOCs or NOx was both effective in alleviating O3 pollution. In addition, HCHO, with the largest RIR value, made important contribution to O3 production. The Empirical Kinetic Modeling Approach (EKMA) revealed that synergistic control of O3 and nitrate can be achieved by decreasing both NOx and VOCs emissions (e.g., alkenes) with the ratio of 3:1. This study emphasized the importance of NOx abatement for the synergistic control of O3 and nitrate pollution in the Tai'an area as the sustained emissions control has shifted the O3 and nitrate formation to a more NOx-limited regime.
Jiang X, Qiu R, Xu Y, Zhang W, Zhu Y, Zhang R, Fang Y, Chu X, Zhao J, Wang Y. RAGraph: A General Retrieval-Augmented Graph Learning Framework. Thirty-Eighth Annual Conference on Neural Information Processing Systems (NeurIPS 2024). 2024.
Zhang G, Wu C, Wang Y, Zhang L, Webb AAG. Rapid heating (<2 My) to ultrahigh-temperature metamorphism via asthenospheric upwelling. Science Advances [Internet]. 2024. 访问链接
Cao T, Wang H, Chen X, Li L, Lu X, Lu K, Fan S. Rapid increase in spring ozone in the Pearl River Delta, China during 2013-2022. npj Climate and Atmospheric Science. 2024;7(1):1-11.
Zhou Y, He L, Tan J, Zhou J, Liu Y. Rapid quantitative analysis of semi-volatile organic compounds in indoor surface film using direct analysis in real time mass spectrometry: a case study on phthalates. Atmospheric Measurement Techniques [Internet]. 2024;17:6415–6423. 访问链接
Wei J, Chen W, Wen D. Rare biosphere drives deterministic community assembly, co-occurrence network stability, and system performance in industrial wastewater treatment system. Environment International [Internet]. 2024;190:108887. 访问链接Abstract
Bacterial community is strongly associated with activated sludge performance, but there still remains a knowledge gap regarding the rare bacterial community assembly and their influence on the system performance in industrial wastewater treatment plants (IWWTPs). Here, we investigated bacterial communities in 11 full-scale IWWTPs with similar process designs, aiming to uncover ecological processes and functional traits regulating abundant and rare communities. Our findings indicated that abundant bacterial community assembly was governed by stochastic processes; thereby, abundant taxa are generally present in wastewater treatment compartments across different industrial types. On the contrary, rare bacterial taxa were primarily driven by deterministic processes (homogeneous selection 61.9%-79.7%), thus they only exited in specific IWWTPs compartments and wastewater types. The co-occurrence networks analysis showed that the majority of keystone taxa were rare bacterial taxa, with rare taxa contributing more to network stability. Furthermore, rare bacteria rather than abundant bacteria in the oxic compartment contributed more to the degradation of xenobiotics compounds, and they were main potential drivers of pollutant removal. This study demonstrated the irreplaceable roles of rare bacterial taxa in maintaining system performance of IWWTPs, and called for environmental engineers and microbial ecologists to increase their attention on rare biosphere.
Yang X, Wang H, Lu K, Ma X, Tan Z, Long B, Chen X, Li C, Zhai T, Li Y. Reactive aldehyde chemistry explains the missing source of hydroxyl radicals. Nature Communications. 2024;15(1).
Li D, Wang C, Huang* H. Real-space approach for the Euler class and fragile topology in quasicrystals and amorphous lattices. SciPost Physics [Internet]. 2024;17:086. 访问链接Abstract
arXiv:2311.01557
Xing B, Ying X, Wang R. Rectifying self-training with neighborhood consistency and proximity for source-free domain adaptation. Neurocomputing [Internet]. 2024;606:128425. 访问链接
Masten HN, Lundh JS, Feygelson TI, Sasaki K, Cheng Z, Spencer JA, Liao P-Y, Hite JK, Pennachio DJ, Jacobs AG. Reduced temperature in lateral (AlxGa1− x) 2O3/Ga2O3 heterojunction field effect transistor capped with nanocrystalline diamond. Applied Physics Letters. 2024;124(15).
Xue C, Ye C, Lu K, Liu P, Zhang C, Su H, Bao F, Cheng Y, Wang W, Liu Y. Reducing Soil-Emitted Nitrous Acid as a Feasible Strategy for Tackling Ozone Pollution. Environmental Science & Technology. 2024;58(21):9.
Sheng A, Deng Y, Ding Y, Cheng L, Liu Y, Li X, Arai Y, Liu J. Regulation of ferrihydrite biotransformation by Fe(II) supply rates and extracellular polymeric substances. Geochimica et Cosmochimica Acta [Internet]. 2024. 访问链接Abstract
Biotransformation of ferrihydrite (Fh) by dissimilatory iron-reducing bacteria (DIRB) into various secondary minerals assemblages widely occurs in anaerobic environments. While respiration-driven supply rates of Fe(II) have been proposed as a primary factor controlling kinetics and mineral products of this process, the specific mechanism by which DIRB respiration rates regulate Fh biotransformation remains elusive. Here, to minimize the complex effects of microbial cells, we conducted Fh transformation using 1 mM biogenic Fe(II) (BioFe(II)), added at different rates to mimic diverse respiration-driven supply rates of Fe(II) by DIRB. For comparison, transformation experiments with FeSO4 alone and FeSO4 plus citrate (CitFe(II)) added at the corresponding supply rates were performed to decouple the specific effects of Fe(II) addition rates and extracellular polymeric substances (EPS) associated with BioFe(II). Decreasing FeSO4 supply rates favored the transformation of Fh to lepidocrocite (Lp) over to Gt and the subsequent transformation of Lp to magnetite (Mt), altering the transformation pathway from Fh → Lp/Gt → Gt to Fh → Lp/Gt → Mt/Gt. These results underscore the significant effect of aqueous Fe(II) supply rates on the competition of olation and oxolation of labile Fe(III) intermediates into different secondary minerals. In the experiments with BioFe(II) and CitFe(II), although EPS or citrate slightly increased Fe(II) adsorption and Fe(III)labile generation, the increase in sorbed Fe(II) was minimal compared to the variations in aqueous Fe(II) concentrations caused by the different Fe(II) supply rates. At the same Fe(II) supply rates, EPS or citrate notably inhibited the transformation of Fh to Gt and the further conversion of Lp, altering the pathway from Fh → Mt/Gt/Lp to primarily Fh → Lp. These effects became more pronounced with the decrease of BioFe(II) and CitFe(II) supply rates. Our findings provide new insights into how DIRB respiration rates control kinetics, pathways, and mineral products of Fh transformation, which is crucial for elucidating the relevant biogeochemical cycling of nutrients and (im)mobilization of contaminants.
Jiao W, Wang K, Xu F, Wang C, Beuther H. Relative alignment between gas structures and magnetic field in Orion A at different scales using different molecular gas tracers. \aap. 2024;686:A202.
Zhou Y, Huang W, Zhu R, HUANG R, Tang K. A Reliable 2 bit MLC FeFET with High Uniformity and 109 Endurance by Gate Stack and Write Pulse Co-optimization, in 2024 IEEE European Solid-State Electronics Research Conference (ESSERC).; 2024:657-660.
Xu N, Hu M, Li X, Song K, Qiu Y, Sun HX, Wang Y, Zeng L, Li M, Wang H, et al. Resolving Ultraviolet-Visible Spectra for Complex Dissolved Mixtures of Multitudinous Organic Matters in Aerosols. Analytical Chemistry. 2024;96(5).
Qiu LD, Wei X, Zhou M, Zhou Y. Resource, Competition, and the Equilibrium Effects of Innovation Subsidies. Journal of Economic Behavior and Organization [Internet]. 2024;224:297-322. 访问链接Abstract
We study the equilibrium effects of innovation subsidies that reduce firms' innovation costs in a monopolistic competition model with firm heterogeneity in innovation capabilities and an industry-level resource constraint. Subsidies change product market competition and resource price, and further affect firms' innovation. We show a counterintuitive result: though subsidies lower innovation costs, high-capability firms may reduce their innovation. This finding implies that the demand curve for innovation investments of certain firms in equilibrium can be locally upward-sloping. We show that at the industry level, both average innovation input and output demonstrate inverted-U shaped responses to increasing subsidies but with differing turning points. Notably, an increase in average innovation input may be accompanied by a decrease in average innovation output. These findings cast doubts on the interpretation of existing empirical evidences on firm and industry responses to innovation subsidies, most of which assume away treatment effect heterogeneity and equilibrium feedbacks.
Wang X, Yan P, Liu C. Responsibility toward society: A review and prospect of Savolainen’severyday information practice. Data and Information Management [Internet]. 2024. 访问链接

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