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| 1 | “All‐In‐One” integrated ultrathin SnS2@3D multichannel carbon matrix power high‐areal–capacity lithium battery anode显示文摘Construction of a thickness‐independent electrode with high active material mass loading is crucial for the development of high energy rechargeable lithium battery.Herein,we fabricate an all‐in‐one integrated SnS2@3D multichannel carbon matrix(SnS2@3DMCM)electrode with in‐situ growth of ultrathin SnS2 nanosheets inside the inner walls of three dimensional(3D)multichannels.The interconnected conductive carbon matrix derived from natural wood acts as an integrated porous current collector to avail the electrons transport and accommodate massive SnS2 nanosheets,while plenty of 3D aligned multichannels facilitate fast ions transport with electrode thickness‐independent even under high mass loading.As expected,the integrated SnS2@3DMCM electrode exhibits remarkable electrochemical lithium storage performance,such as exceptional high‐areal‐capacity of 6.4 mAh cm−2,high rate capability of 3 mAh cm−2 under current of 6.8 mAcm−2(10 C),and stable cycling performance of 6.8 mAcm−2 with a high mass loading of 7mg cm−2.The 3D integrated porous electrode constructing conveniently with the natural source paves new avenues towards future high‐performance lithium batteries. | Hongyi Xu Chengxin Peng Yuhua Yan Fei Dong Hao Sun Junhe Yang Shiyou Zheng | 2019 | Carbon Energy2019,1,2: | 4 |
| 2 | Construction of Ecological City from the Perspective of Ecological Progress—A Case Study of Liaocheng City显示文摘Ecological progress is a new stage in the development of human civilization and ecological city is a new city development model under the concept of ecological progress. In this paper, favorable conditions and constraints for constructing an ecological city are analyzed and construction concepts are put forward. It contributes to the construction of Liaocheng into an ecological city and has a referential value for other cities. | LIU Kai WANG Chengxin SHI Jialu SUN Xue | 2013 | Journal of Landscape Research2013,5,3: | 2 |
| 3 | Influence of endogenous ciliary neurotrophic factor on neural differentiation of adult rat hippocampal progenitors显示文摘Ciliary neurotrophic factor is the only known neurotrophic factor that can promote differentiation of hippocampal neural progenitor cells to glial cells and neurons in adult rats.This process is similar to spontaneous differentiation.Therefore,ciliary neurotrophic factor may be involved in spontaneous differentiation of neural stem cells.To verify this hypothesis,the present study isolated neural progenitor cells from adult male rats and cultured them in vitro.Results showed that when neural progenitor cells were cultured in the absence of mitogen fibroblast growth factor-2 or epidermal growth factor,they underwent spontaneous differentiation into neurons and glial cells.Western blot and immunocytochemical staining showed that exogenous ciliary neurotrophic factor strongly induced adult hippocampal progenitor cells to differentiate into neurons and glial cells.Moreover,passage 4 adult hippocampal progenitor cells expressed high levels of endogenous ciliary neurotrophic factor,and a neutralizing antibody against ciliary neurotrophic factor prevented the spontaneous neuronal and glial differentiation of adult hippocampal progenitor cells.These results suggest that the spontaneous differentiation of adult hippocampal progenitor cells is mediated partially by endogenous ciliary neurotrophic factor. | Jun Ding Zhili He Juan Ruan Ying Liu Chengxin Gong Shenggang Sun Honghui Chen | 2013 | Neural Regeneration Research2013,8,4: | 2 |
| 4 | Compositional and structural engineering of inorganic nanowires toward advanced properties and applications显示文摘As natural one-dimensional confined electron transport channels and photonpropagation paths, nanowires (NWs) display unmatched properties and hugepotential for application in diverse fields. The ability to construct a nanoscalefunctional system would enable significant advances in the currently desiredminiaturized device integration. To date, the basic properties of all types ofnanowire crystals, including metallic NWs, as well as group IV-related, III-V/II-VI compounds, and metal oxide NWs, are well understood. Regarding futurework, compositional (ie, doping and alloying) and structural (defect andheterostructure) designs to flexibly realize custom-made functionality areemphasized. Along this line, recent progress is reviewed, including the basicproperties (nanowire mechanics, electronics, and photonics) and applicationssuch as photodetectors and chemical/biological sensors. A review of the correlationsbetween the compositional/structural configuration of nanowires and thecorresponding functionality is also presented. The future development directionof this field is concluded and highlighted at the end. | Yong Sun Bo Sun Jingbo He Chengxin Wang | 2019 | InfoMat2019,1,4: | 2 |
| 5 | A Bifunctional-Modulated Conformal Li/Mn-Rich Layered Cathode for Fast-Charging,High Volumetric Density and Durable Li-Ion Full Cells显示文摘Lithium-and manganese-rich(LMR)layered cathode materials hold the great promise in designing the next-generation high energy density lithium ion batteries.However,due to the severe surface phase transformation and structure collapse,stabilizing LMR to suppress capacity fade has been a critical challenge.Here,a bifunctional strategy that integrates the advantages of surface modification and structural design is proposed to address the above issues.A model compound Li_(1.2)Mn_(0.54)Ni_(0.13)Co_(0.13)O_(2)(MNC)with semi-hollow microsphere structure is synthesized,of which the surface is modified by surface-treated layer and graphene/car-bon nanotube dual layers.The unique structure design enabled high tap density(2.1 g cm^(−3))and bidirectional ion diffusion pathways.The dual surface coatings covalent bonded with MNC via C-O-M linkage greatly improves charge transfer efficiency and mitigates electrode degradation.Owing to the synergistic effect,the obtained MNC cathode is highly conformal with durable structure integrity,exhibiting high volumetric energy density(2234 Wh L^(−1))and predominant capacitive behavior.The assembled full cell,with nanograph-ite as the anode,reveals an energy density of 526.5 Wh kg^(−1),good rate performance(70.3%retention at 20 C)and long cycle life(1000 cycles).The strategy presented in this work may shed light on designing other high-performance energy devices. | Zedong Zhao Minqiang Sun Tianqi Wu Jiajia Zhang Peng Wang Long Zhang Chongyang Yang Chengxin Peng Hongbin Lu | 2021 | Nano-Micro Letters2021,13,8: | 2 |
| 6 | The effective mechanism of the polysaccharides from Panax ginseng on chronic fatigue syn- drome 显示文摘 | Wang Jia Sun Chengxin Zheng Yan | 2014 | Archives of pharmacal research2014,37,4: | 1 |
| 7 | Neuro- protective effects of ginseng pectin through the activation of ERK/MAPK and Akt survival signaling pathways 显示文摘 | Yuying Fan Chengxin Sun Xiaoge Gao | 2012 | Mol Med Report2012,5,5: | 1 |
| 8 | Simulation of Bubble Formation and Distribution Uniformity显示文摘 | WANG DEQING SUN CHENGXIN | 2008 | Journal of Materials Science2008,43,: | 1 |
| 9 | Knockdown of insulin-like growth factor 2 gene disrupts mitochondrial functions in the liver显示文摘Even though insulin-like growth factor 2(IGF2)has been reported to be overexpressed in nonalcoholic fatty liver disease(NAFLD),its role in the progression of NAFLD and the potential mechanism remain largely unclear.Using in vitro models,we found that IGF2 was the key overexpressed gene in steatosis,suggesting a possible association between IGF2 and NAFLD.Interestingly,loss-of-function experiments revealed that inhibition of IGF2 protein impaired mitochondrial biogenesis and respiration.It additionally disrupted the expression changes of mitochondrial fusion and fission-related proteins necessary in maintaining mitochondrial homeostasis.Consistently,IGF2 knockdown reduced the mitochondrial membrane potential and increased the production of reactive oxygen species.Mechanistically,IGF2 regulates mitochondrial functions by modulating the expression of SIRT1 and its downstream gene PGCla.This research opens a new frontier on the role of IGF2 in energy metabolism,which potentially participates in the development of NAFLD.As such,IGF2 is a potential therapeutic target against NAFLD. | Weiwei Gui Yiyi Zhu Shuiya Sun Weifen Zhu Bowen Tan Hanxin Zhao Chengxin Shang Fenping Zheng Xihua Lin Hong Li | 2021 | Journal of Molecular Cell Biology2021,13,8: | 1 |
| 10 | Multi-time scale photoelectric behavior in facile fabricated transparent and flexible silicon nanowires aerogel membrane显示文摘In recent years,transparent and flexible materials have been widely pursued in electronics and optoelectronics fields for usage as planar electrodes,energy conversion components and sensing units.As the most widely applied semiconductor material,the related progress in silicon is of great significance although with large difficulty.Herein,we report a one-step method to achieve flexible and transparent silicon nanowires aerogel membrane.A competitive carrier kinetics involving interfacial trapped carriers and the valence electrons transition is demonstrated,according to the photoelectric performance of a sandwiched graphene/silicon nanowires membrane/AI device,i.e.,rapidly positive photoresponse dominated by laser excited^ee-carriers generation(〜500 ms)and subsequent slow negative photocurrent evolution due to laser heating involved multi-levels process(>10 s).These results contribute to fabrication of silicon nanowire self-assembly structures and also the exploration of their optoelectrical properties in flexible and transparent devices. | Jin Yang Jingbo He Xiaobin Zou Bo Sun Yong Sun Chengxin Wang | 2022 | Nano Research2022,15,2: | 0 |
| 11 | Nanowires mediated growth ofβ-Ga_(2)O_(3)nanobelts for hightemperature(>573 K)solar-blind photodetectors显示文摘β-Ga_(2)O_(3),with ultra-wide bandgap,high absorption coefficient for high-energy ultraviolet(UV)photons,and high structural stability toward harsh-environment,has been receiving persistent attention for deep ultraviolet photodetectors applications.However,realization of devices with high tolerance toward high temperature faces great challenges due to considerable background signals mainly arising from abundant thermal excited carrier.Herein,nanowire-mediated high-qualityβ-Ga_(2)O_(3)nanobelts with ultra-thin thickness and length up to several hundred micrometers were achieved via a simple catalyst-free chemical vapor deposition route.The resulted microdevice output superior optoelectric figure of merits among numerous reports aboutβ-Ga_(2)O_(3),i.e.,ultra-low dark current(below the detection limit of 10−12 A),high responsivity(1,320 A/W),and high spectral selectivity working under low voltage(~2 V).More importantly,the performance remains robust at elevated temperature higher than 573 K.These results indicate a large prospect for low-voltage driven deep ultraviolet photodetectors with good sensitivity and stability at harsh environments. | Xiaobin Zou Dongyu Xie Yong Sun Chengxin Wang | 2023 | Nano Research2023,16,4: | 0 |
| 12 | 锌指蛋白snail1通过抑制脂肪酶ATGL的表达调控脂肪分解显示文摘脂肪分解为新陈代谢提供能量。然而,脂肪分解功能异常会导致脂质异常积累和脂毒性。甘油三酯脂肪酶(ATGL)是体内脂肪催化分解的第一步限速酶,但其调控机制尚不明确。 | Chengxin Sun Lin Jiang Yan Liu Hong Shen Stephen J.Weiss 周义发 Liangyou Rui | 2017 | 科学新闻2017,0,4: | 0 |
| 13 | Spatiotemporal phase change materials for thermal energy long-term storage and controllable release显示文摘Phase change materials(PCMs)have attracted much attention in the field of solar thermal utilization recently,due to their outstanding thermal energy storage performance.However,PCMs usually release their stored latent heat spontaneously as the temperature below the phase transition temperature,rendering thermal energy storage and release uncontrollable,thus hindering their practical application in time and space.Herein,we developed erythritol/sodium carboxymethylcellulose/tetrasodium ethylenediaminetetraacetate(ERY/CMC/EDTA-4Na)composite PCMs with novel spatiotemporal thermal energy storage properties,defined as spatiotemporal PCMs(STPCMs),which exhibit the capacity of thermal energy long-term storage and controllable release.Our results show that the composite PCMs are unable to lose latent heat due to spontaneous crystallization during cooling,but can controllably release thermal energy through cold crystallization during reheating.The cold-crystallization temperature and enthalpy of composite PCMs can be adjusted by proportional addition of EDTA-4Na to the composite.When the mass fractions of CMC and EDTA-4Na are both 10%,the composite PCMs can exhibit the optical coldcrystallization temperature of 51.7℃ and enthalpy of 178.1 J/g.The supercooled composite PCMs without latent heat release can be maintained at room temperature(10-25℃)for up to more than two months,and subsequently the stored latent heat can be controllably released by means of thermal triggering or heterogeneous nucleation.Our findings provide novel insights into the design and construction of new PCMs with spatiotemporal performance of thermal energy long-term storage and controllable release,and consequently open a new door for the development of advanced solar thermal utilization techniques on the basis of STPCMs. | Yangeng Li Yan Kou Keyan Sun Jie Chen Chengxin Deng Chaohe Fang Quan Shi | 2023 | Journal of Energy Chemistry2023,,5: | 0 |
| 14 | 38CrMoAl钢空心阴极辅助等离子渗氮的研究显示文摘本项研究集中在用空心阴极辅助等离子渗氮处理38CrMoAl钢。渗氮时间、温度、试样的势都作为正交试验的影响因素,也确定优选的工艺条件。试验结果表明,在最好的正交试验工艺下渗氮层的显微硬度显著增加,比处理前高4~5倍。 | DePing Sun ChengXin Lin Peng Xu | 2014 | 热处理技术与装备2014,35,2: | 0 |
| 15 | Two-dimensional Bi_(2)O_(2)Se nanosheets for sensitive and fast-response high-temperature photodetectors显示文摘Two-dimensional Bi_(2)O_(2)Se with unique crystal structure and ultrahigh carrier mobility has been catching widespread attention and demonstrated great potential in nanoelectronic and optoelectronic devices.The existence of lattice oxygen ensures its ultrahigh stability at ambient environment and make it promising for high-temperature applications.Here,through systematical characterizations,the high air stability of Bi_(2)O_(2)Se nanosheets at temperatures up to 250℃is evidently demonstrated.The fabricated photodetectors based on the as-grown Bi_(2)O_(2)Se nanosheets show high stability,high sensitivity(~5319 A/Wat 250℃with a bias of 1 V)and fast response(several milliseconds)from room temperature to 250℃.Besides,it was observed that the devices also show good photoresponse covering UV,visible and infrared regions at high temperatures.These results suggest their promising high-performance applications serving under harsh conditions. | Xiaobin Zou Ruize Wang Yong Sun Chengxin Wang | 2023 | Journal of Materiomics2023,9,6: | 0 |
| 16 | Transparent ultrathin SiO_(2) nanowire aerogel displaying novel properties when interacting with water:A promising versatile functional platform显示文摘With low density,high porosity,and outstanding physicochemical stability,ceramic nanowire aerogels and sponges exhibit various interesting properties.Herein,an ultrathin silica nanowire aerogel(SiO_(2)NWsA)was achieved via a facile chemical vapor deposition route.In addition to good mechanical and thermal performances,properties resulting from active water-aerogel interactions are revealed,i.e.,outstanding transparency,strong capillary effect,enhanced compressive strength(a reversible strain of∼62%),switchable wettability and robust shape retention ability when filled with water.The physical mechanism related to these interesting properties is demonstrated basically according to its unique features(distinctly reduced nanowire diameter,enriched nanoscopic gap channels,and reinforced network).To demonstrate the superiority,an advantageous solar vapor generation system(hydrophilic NWs-A/reduced graphene oxide(rGO)/hydrophobic NWs-A)was obtained by integrating these favorable characteristics,giving rise to remarkably promoted vapor evaporation rate and energy efficiency compared to the rGO hydrophobic NWs-A device.These results contribute to the structural design and functional exploration of nanowire aerogels. | Jingbo He Churong Ma Jin Yang Xiaobin Zou Bo Sun Yong Sun Chengxin Wang | 2023 | Fundamental Research2023,3,1: | 0 |
| 17 | Plant and fungal species interactions differ between aboveground and belowground habitats in mountain forests of eastern China显示文摘Plant and fungal species interactions drive many essential ecosystem properties and processes;however,how these interactions differ between aboveground and belowground habitats remains unclear at large spatial scales.Here,we surveyed 494 pairwise fungal communities in leaves and soils by Illumina sequencing,which were associated with 55 woody plant species across more than 2,000-km span of mountain forests in eastern China.The relative contributions of plant,climate,soil and space to the variation of fungal communities were assessed,and the plant-fungus network topologies were inferred.Plant phylogeny was the strongest predictor for fungal community composition in leaves,accounting for 19.1%of the variation.In soils,plant phylogeny,climatic factors and soil properties explained 9.2%,9.0%and 8.7%of the variation in soil fungal community,respectively.The plant-fungus networks in leaves exhibited significantly higher specialization,modularity and robustness(resistance to node loss),but less complicated topology(e.g.,significantly lower linkage density and mean number of links)than those in soils.In addition,host/fungus preference combinations and key species,such as hubs and connectors,in bipartite networks differed strikingly between aboveground and belowground samples.The findings provide novel insights into cross-kingdom(plant-fungus)species co-occurrence at large spatial scales.The data further suggest that community shifts of trees due to climate change or human activities will impair aboveground and belowground forest fungal diversity in different ways. | Teng Yang Leho Tedersoo Pamela S.Soltis Douglas E.Soltis Miao Sun Yuying Ma Yingying Ni Xu Liu Xiao Fu Yu Shi Han-Yang Lin Yun-Peng Zhao Chengxin Fu Chuan-Chao Dai Jack A.Gilbert Haiyan Chu | 2023 | Science China(Life Sciences)2023,66,5: | 0 |