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| 1 | Adsorption behavior of carbon dioxide and methane in bituminous coal:A molecular simulation study显示文摘The adsorption behavior of CO_2, CH_4 and their mixtures in bituminous coal was investigated in this study. First, a bituminous coal model was built through molecular dynamic(MD) simulations, and it was confirmed to be reasonable by comparing the simulated results with the experimental data. Grand Canonical Monte Carlo(GCMC)simulations were then carried out to investigate the single and binary component adsorption of CO_2 and CH_4with the built bituminous coal model. For the single component adsorption, the isosteric heat of CO_2 adsorption is greater than that of CH_4 adsorption. CO_2 also exhibits stronger electrostatic interactions with the heteroatom groups in the bituminous coal model compared with CH_4, which can account for the larger adsorption capacity of CO_2 in the bituminous coal model. In the case of binary adsorption of CO_2 and CH_4mixtures, CO_2 exhibits the preferential adsorption compared with CH_4 under the studied conditions. The adsorption selectivity of CO_2 exhibited obvious change with increasing pressure. At lower pressure, the adsorption selectivity of CO_2 shows a rapid decrease with increasing the temperature, whereas it becomes insensitive to temperature at higher pressure. Additionally, the adsorption selectivity of CO_2 decreases gradually with the increase of the bulk CO_2 mole fraction and the depth of CO_2 injection site. | Jing You Li Tian Chao Zhang Hongxing Yao Wu Dou Bin Fan Songqing Hu | 2016 | Chinese Journal of Chemical Engineering2016,24,9: | 10 |
| 2 | Stable Ionic Rh(I, 1I, m) Complexes Ligated by an Imidazolium- Substituted Phosphine with zr-Acceptor Character: Synthesis, Characterization, and Application to Hydroformylation显示文摘 | You Hongxing Wang Yongyong Zhao Xiaoli | 2013 | Organometallics2013,32,9: | 1 |
| 3 | Linear Canonical Transform Related Operators and Their Applications to Signal Analysis——Part I: Fundamentals显示文摘In recent years, the Linear canonical transform(LCT) has been recognized as a powerful tool in signal processing scenarios and optics. In this two-part paper, the issue of unitary and Hermitian operators and their duality concept associated with LCT are addressed. In Part I,based on the proposed operators, three LCT-related topics are derived. Firstly, the definitions of convolution and correlation operations in LCT domain are constructed. Secondly, a new transform which is named as Linear canonical mellin transform(LCMT) is introduced and then convolution and correlation operations in LCMT domain are given.Thirdly, the so-called joint canonical distributions which satisfy the canonical transform marginal are given. Part II concerns two applications of the theory derived in Part I for signal analysis. | WANG Xiaobo ZHANG Qiliang ZHOU You QIAN Jing ZOU Hongxing | 2015 | Chinese Journal of Electronics2015,24,1: | 1 |
| 4 | Progress in the application of scanning probe microscopy to biology 显示文摘 | You Hongxing Lowe C R | 1996 | Current Opinion in Biotechnology1996,7,: | 1 |
| 5 | Linear Canonical Transform Related Operators and Their Applications to Signal Analysis——Part Ⅱ: Applications显示文摘In this part of the paper, based on the fundamentals derived in Part I, we develop and implement two new algorithms. The first one, based on the proposed correlation operation for Linear canonical transform(LCT),is designed to detect and estimate linear Frequency modulated(FM) signals. The second one, based on the proposed joint canonical distribution, aims at reducing the cross-terms which are caused by the quadratic nature of Wigner distribution(WD). Several simulation results are given to illustrate both the strengths and weaknesses of the two algorithms. | WANG Xiaobo ZHANG Qiliang ZHOU You QIAN Jing ZOU Hongxing | 2015 | Chinese Journal of Electronics2015,24,2: | 1 |
| 6 | Solution-processed wafer-scale nanoassembly of conducting polymers enables selective ultratrace nerve agent detection at low power显示文摘There is a great interest in developing microelectronic devices based on nanostructured conducting polymers that can selectively electro-couple analytes at high sensitivity and low power.Nanostructured conducting polymers have emerged as promising candidates for this technology due to their excellent stability with low redox potential,high conductivity,and selectivity endowed by chemical functionalization.However,it remains challenging to develop cost-effective and large-scale assembly approaches for functionalized conducting polymers in the practical fabrication of electronic devices.Here,we reported a straightforward waferscale assembly of nanostructured hexafluoroisopropanol functionalized poly(3,4-ethylenedioxythiophene)(PEDOT-HFIP)on smooth substrates.This approach is template-free,solution-processed,and adaptable to conductive and nonconductive substrates.By this approach,the nanostructured PEDOT-HFIPs could be easily integrated onto interdigitated electrodes with intimate ohmic contact.At the optimized space-to-volume ratio,we demonstrated a low-power,sensitive,and selective nerve agent sensing technology using this platform by detecting sarin vapor with a limit of detection(LOD)of 10 ppb and signal strength of 400 times the water interference at the same concentration,offering significant advantages over existing similar technologies.We envision that its easy scale-up,micro size,small power consumption,and combination of high sensitivity and selectivity make it attractive for various wearable platforms. | Bin Luo Jianan Weng Zhi Geng Qichao Pan Xilin Pei Yong He Chuanzhi Chen Hongxing Zhang Renbo Wei Yupeng Yuan Jin Yang Jinyi Ma Zhengwei You Bo Zhu | 2023 | Nano Research2023,16,4: | 0 |