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| 1 | Comparison of simple discectomy and instrumented posterior lumbar interbody fusion for treatment of lumbar disc herniation combined with Modic endplate changes显示文摘 | Cao Peng Chen Zhe Zheng Yuehuan Wang Yuren Jiang Leisheng Yang Yaoqi Zhuang Chengyu Liang Yu Zheng Tao Gong Yaocheng Zhang Xingkai Wu Wenjian Qiu Shijing | 2014 | Chinese Medical Journal2014,,15: | 15 |
| 2 | Triggering in-plane defect cluster on MoS_(2) for accelerated dinitrogen electroreduction to ammonia显示文摘Electrochemical nitrogen reduction reaction (eNRR) is an alternative promising manner for sustainable N2 fixation with low-emission. The major challenge for developing an efficient electrocatalyst is the cleaving of the stable Ntriple bondN triple bonds. Herein, we design a new MoS_(2) with in-plane defect cluster through a bottom-up approach for the first time, where the defect cluster is composed of three adjacent S vacancies. The well-defined in-plane defect clusters could contribute to the strong chemical adsorption and activation towards inert nitrogen, achieving an excellent eNRR performance with an ammonia yield rate of 43.4 ± 3 μg h^(−1) mgcat.^(−1) and a Faradaic efficiency of 16.8 ± 2% at −0.3 V (vs. RHE). The performance is much higher than that of MoS_(2) with the edge defect. Isotopic labeling confirms that N atoms of produced NH4+ originate from N2. Furthermore, the in-plane defect clusters realized the alternate hydrogenation of nitrogen in a side-on way to synthesize ammonia. This work provides a prospecting strategy for fine-tuning in-plane defects in a catalyst, and also promotes the progress of eNRR. | Wanru Liao Ke Xie Lijuan Liu Xiuyun Wang Yu Luo Shijing Liang Fujian Liu Lilong Jiang | 2021 | Journal of Energy Chemistry2021,30,11: | 3 |
| 3 | Effect of body fat stores on total and regional bone mineral density in perimenopausal Chinese women显示文摘 | Zhifeng Yu Zhenan Zhu Tingting Tang Kerong Dai Shijing Qiu | 2009 | Journal of Bone and Mineral Metabolism2009,,3: | 1 |
| 4 | A 3-DOF piezoelectric robot with continuous walking gait aiming at cross-scale smooth motion显示文摘Piezoelectric robots play important roles in the field of micromanipulation, but it is difficult for them to generate steady precision motion at any moment. In order to eliminate the changing inertial force and improve the motion smoothness, this work proposes a piezoelectric robot with continuous walking gait inspired by ants. The idea is verified with theoretical models and numerical simulation, and the performances are evaluated with experiments. The robot is proven to have the ability to generate 3-DOF(dgeree of freedom) continuous smooth motions with constant speeds. The maximum and minimum smooth velocities have a difference of six orders of magnitude, realizing cross-scale velocity control. Besides, the motion resolution reaches several nanometers with the unlimited workspace, so the cross-scale displacement control can be also obtained. Furthermore, with great robustness against varying loads, the stable actuation capability of the robot is more than 22 times of the self-weight. To sum up,the proposed robot generates cross-scale smooth motion in both aspects of displacement and velocity, so it has good prospects in the applications requiring steady precision motion. The design philosophy and research methods in this work can be valuable references for further advances of micromanipulation robots. | YU HongPeng LIU YingXiang DENG Jie ZHANG ShiJing CHEN WeiShan | 2023 | Science China(Technological Sciences)2023,66,1: | 0 |
| 5 | Evaluation of Uncertainty in the Determination of Ozone Concentration in the Air by Sodium Indigo Disulfonate Spectrophotometry显示文摘The uncertainty of the determination of ozone concentration in the air at a workplace by sodium indigo disulfonate spectrophotometry was evaluated.The results show that the expanded uncertainty of ozone concentration U was 0.016 mg/m^(3),and the main factor affecting the measurement uncertainty of ozone concentration was the uncertainty introduced during sample collection. | Tingting ZHANG Xiujuan YU Shijing BIAN | 2022 | Meteorological and Environmental Research2022,13,1: | 0 |
| 6 | Challenges and prospects in artificial nitrogen cycle for energy decarbonization显示文摘Fossil fuels still dominate global energy structure in our modern society,and have led to massive CO_(2) emissions.Recently,ammonia has been regarded as a clean energy carrier toward diminishing or even eliminating the CO_(2) emissions and has received significant attention.The ammonia can be synthesized from atmospheric dinitrogen and green hydrogen from water electrolysis by renewable energies,and converted back into dinitrogen and water for energy release,as shown in Figure 1.Benefited from the matured ammonia manufacture and transportation throughout the world for over one century,the already existing high-capacity infrastructure helps efficient storage and redistribution of ammonia with lowest economic cost.However,although considerable progress has been made in this artificial nitrogen cycle,there are still many challenges in developing highly-efficient routes and catalysts.Herein,we evaluate the current catalytic routes of ammonia synthesis(including thermocatalytic synthesis,electrocatalytic synthesis and photocatalytic synthesis)and ammonia utilization(involving ammonia decomposition,direct ammonia fuel cells and ammonia combustion).We also discuss the key issue in each process,and anticipate that our viewpoints and opinions could facilitate the developments of artificial nitrogen cycle and energy decarbonization. | Huihuang Fang Yanliang Zhou Xiaobo Peng Yu Luo Xiuyun Wang Shijing Liang Lilong Jiang | 2023 | National Science Open2023,2,2: | 0 |
| 7 | Fractal-based dynamic response of a pair of spur gears considering microscopic surface morphology显示文摘The meshing surfaces of a gear pair are rough from a microscopic perspective and the surface topography will affect the dynamic response.To study the influence of real surface topography on the gear system dynamic performance,this paper es-tablishes a 3-degree of freedom transverse-torsional dynamic model with regard to the morphology of the interface.By fractal theory,the expression of backlash be-tween gears is modified based on the height of asperities.The time-varying sifness is calculated according to the fractal method rather than assuming a constant,which is more realistic.The dimensionless dynamic differ ential equations are established and solved with surface topography affected backlash function and time-varying sifess.The dynamic response of the gear system with respec to fractal dimension and fractal roughness is analyzed. | Xin Yu Yunyun Sun Sheng Liu Shijing Wu | 2021 | International Journal of Mechanical System Dynamics2021,1,2: | 0 |
| 8 | Facile Synthesis and High-Value Utilization of Ammonia显示文摘Ammonia is a key component in fertilizer and the carbon-free hydrogen carrier.Catalytic ammonia synthesis and utilization have played a central role in the development of chemical engineering.The industrial production of ammonia remains dependent on the energy-and carbon-intensive Haber-Bosch process.A major effort has been devoted to developing robust and efficient catalysts,as well as alternative benign processes.Herein,we detail our endeavors that develop the ammonia synthesis and decomposition catalysts,and utilize the ammonia energy.We firstly discuss the catalysts for ammonia synthesis via dissociative and associative process,and the regulation of catalysts'properties.Then,we review the burgeoning electrocata-lytic nitrogen reduction process,focusing on the enhanced catalytic performances by the regulation of the catalysts and the electrode.Additionally,we provide a novel high-value utilization of ammonia to achieve the'zero-carbon'circular economy.The promising catalysts,reactors,and ammonia energy systems have been discussed in detail.We end this Account that offers future research directions and prospects of ammonia. | Yu Luo Shijing Liang Xiuyun Wang Bingyu Lin Chongqi Chen Lilong Jiang | 2022 | Chinese Journal of Chemistry2022,40,8: | 0 |
| 9 | Research progress and application of the CRISPR/Cas9 gene-editing technology based on hepatocellular carcinoma显示文摘Hepatocellular carcinoma(HCC)is now a common cause of cancer death,with no obvious change in patient survival over the past few years.Although the traditional therapeutic modalities for HCC patients mainly involved in surgery,chemotherapy,and radiotherapy,which have achieved admirable achievements,challenges are still existed,such as drug resistance and toxicity.The emerging gene therapy of clustered regularly interspaced short palindromic repeat/CRISPR-associated nuclease 9-based(CRISPR/Cas9),as an alternative to traditional treatment methods,has attracted considerable attention for eradicating resistant malignant tumors and regulating multiple crucial events of target gene-editing.Recently,advances in CRISPR/Cas9-based anti-drugs are presented at the intersection of science,such as chemistry,materials science,tumor biology,and genetics.In this review,the principle as well as statues of CRISPR/Cas9 technique were introduced first to show its feasibility.Additionally,the emphasis was placed on the applications of CRISPR/Cas9 technology in therapeutic HCC.Further,a broad overview of non-viral delivery systems for the CRISPR/Cas9-based anti-drugs in HCC treatment was summarized to delineate their design,action mechanisms,and anticancer applications.Finally,the limitations and prospects of current studies were also discussed,and we hope to provide comprehensively theoretical basis for the designing of anti-drugs. | Shijing Yu Ruirui Zhao Bingchen Zhang Chunmei Lai Linyan Li Jiangwen Shen Xiarong Tan Jingwei Shao | 2023 | Asian Journal of Pharmaceutical Sciences2023,18,4: | 0 |
| 10 | Quantum thermal field fluctuation induced corrections to the interaction between two ground-state atoms显示文摘We generalize the formalism proposed by Dalibard, Dupont-Roc, and Cohen-Tannoudji(the DDC formalism) in the fourth order for two atoms in interaction with scalar fields in vacuum to a thermal bath at finite temperature T, and then calculate the interatomic interaction energy of two ground-state atoms separately in terms of the contributions of thermal fluctuations and the radiation reaction of the atoms and analyze in detail the thermal corrections to the van der Waals and Casimir–Polder interactions. We discover a particular region, i.e. 4(λ3β)(1/2) ■ L■λwith L, β and λ denoting the interatomic separation, the wavelength of thermal photons and the transition wavelength of the atoms respectively, where the thermal corrections remarkably render the van der Waals force, which is usually attractive, repulsive, leading to an interesting crossover phenomenon of the interatomic interaction from attractive to repulsive as the temperature increases. We also find that the thermal corrections cause significant changes to the Casimir–Polder force when the temperature is sufficiently high, resulting in an attractive force proportional to TL-3in the λ ■ β ■ L region, and a force that can be either attractive or repulsive and even vanishing in the β ■ λ ■ L region depending on the interatomic separation. | Shijing Cheng Wenting Zhou Hongwei Yu | 2022 | Communications in Theoretical Physics2022,74,12: | 0 |