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1Carbon materials from melamine sponges for supercapacitors and lithium battery electrode materials: A review显示文摘With the increasing energy demand together with the deteriorating environment and decreasing fossil fuel resources,the development of highly efficient energy conversion and storage devices is one of the key challenges of both fundamental and applied research in energy technology.Melamine sponges(MS)with low density,high nitrogen content,and high porosity have been used to design and obtain three‐dimensional porous carbon electrode materials.More importantly,they are inexpensive,environment‐friendly,and easy to synthesize.There have been many reports on the modification of carbonized MS and MS‐based composites for supercapacitor and lithium battery electrode materials.In this paper,recent studies on the fabrication of electrode materials using MS as raw materials have been mainly reviewed,including carbonation,doping activation,and composite modification of MS,and expectations for the development of porous carbon materials for energy storage as a reference with excellent performance,environment‐friendliness,and long life.Yanying Shi Guijing Liu Rencheng Jin Hui Xu Qingyao Wang Shanmin Gao 2019Carbon Energy2019,1,2:11
2Ultrasonic-assisted pyrolyzation fabrication of reduced SnO2-x/g-C3N4 heterojunctions: Enhance photoelectro- chemical and photocatalytic activity under visible LED light irradiation显示文摘新奇 SnO 2x /g-C3 N 4 异质接面 nanocomposites 减少的 SnO 2x nanoparticles 和 exfoliated g-C 3 N 4 nanosheets 被一个方便一步舞热分解方法准备。同样准备的 nanocomposites 的结构、词法、光的性质详细被描绘,显示 g-C 3 N 4 nanosheets 被小、分散得好的 SnO 2x nanoparticles 阻止。nanocomposites 的紫外可见的光谱学吸收乐队比纯 SnO 2 或 g-C 3 N 4 。发生在 nanocomposites 的费用转移和再结合过程用线性扫描 voltammetry 和电气化学的阻抗光谱学被调查。在 30-W visible-light-emitting 二极管照耀下面,包含 27.4 wt.% SnO 2x 的异质接面展出了 0.0468 妈牴捡牡潢祸楬?楤湡票牤摩?倨?的最高的光电流密度??圠?敤潭獮牴瑡?桴瑡?湵楬敫倠??映汩?倠??渠湡牯摯?硥楨楢獴漠瑰捩污眠癡来極敤映慥畴敲?攠桮湡散?L潳灲楴湯?湡?牆湥敫?硥楣慴楴湯攠業獳潩?湩琠敨瘠獩扩敬爠来潩??摤瑩潩慮汬?眠?敭獡牵摥琠敨攠敬瑣楲慣?牰灯牥楴獥漠?呐??慮潮潲獤?湩汣摵湩?桴?潣摮'讟N楶祴愠潬杮琠敨朠潲瑷?楤敲瑣潩?景琠敨渠湡牯摯?桷捩?獩爠畯桧祬???Kai Li Xiaoqiao Zeng Shanmin Gao Lu Ma Qingyao Wang Hui Xu Zeyan Wang Baibiao Huang Ying Dai Jun Lu 2016Nano Research2016,9,7:5
3How much control causes tunneling? Evidence from China显示文摘We study the dynamic causal effects of the shareholding ratio of controlling shareholder on tunneling behavior in China.We use control-right-transfers as the event to conduct the study.We obtain 394 control-right-transfer samples in China corporate control market from 2001 to 2008.We use related party transactions amount to capture control shareholders’tunneling activities,and make the following findings.Firstly,tunneling behavior is significantly affected by the shareholding ratio of controlling shareholder.Secondly,the relationship between tunneling and shareholding ratio of controlling shareholder takes an N shape(incline-decline-incline).There are at least two turning points in the relationship.Furthermore,firms with shareholding ratios of controlling shareholder that range from 34.46%to 39.01%(8.99–18.04%)exhibit the most(least)severe tunneling.Firm size is significantly positively related to tunneling activities.In addition,the shareholding ratios of the board and the tunneling activities are significantly negatively correlated.These findings imply the shareholding ratio decision of controlling shareholder in control transfers lead to agency problems manifested in China in a particular form of tunneling.Wenting Chen Shanmin Li Crystal Xiaobei Chen 2017China Journal of Accounting Research2017,,3:2
4Recentadvancesincarbon‐basedmaterials for solar‐driven interfacial photothermal conversion water evaporation:Assemblies,structures,applications,and prospective显示文摘The shortage of fresh water in the world has brought upon a serious crisis to human health and economic development.Solar‐driven interfacial photothermal conversion water evaporation including evaporating seawater,lake water,or river water has been recognized as an environmentally friendly process for obtaining clean water in a low‐cost way.However,water transport is restricted by itself by solar energy absorption capacity's limits,especially for finite evaporation rates and insufficient working life.Therefore,it is important to seek photothermal conversion materials that can efficiently absorb solar energy and reasonably design solar‐driven interfacial photothermal conversion water evaporation devices.This paper reviews the research progress of carbon‐based photothermal conversion materials and the mechanism for solar‐driven interfacial photothermal conversion water evaporation,as well as the summary of the design and development of the devices.Based on the research progress and achievements of photothermal conversion materials and devices in the fields of seawater desalination and photothermal electric energy generation in recent years,the challenges and opportunities faced by carbon‐based photothermal conversion materials and devices are discussed.The prospect of the practical application of solar‐driven interfacial photothermal conversion evaporation technology is foreseen,and theoretical guidance is provided for the further development of this technology.Yanmin Li Yanying Shi Haiwen Wang Tiefeng Liu Xiuwen Zheng Shanmin Gao Jun Lu 2023Carbon Energy2023,5,11:2
5A new piazodriven precision micropositioning stage utilizing flexure hinges显示文摘Pend Gao Shanmin Swei Zhejun Yuan 1999Nanotechnology1999,,10:1
6A new piazodriven precision micropositioning stage utilizing flexure hinges显示文摘Pend Gao Shanmin Swei Zhejun Yuan 1999Nanotechnology1999,,10:1
7A new piezo-driven precision micro positioning stage utilizing flexure hinges显示文摘GAO Pend SWEI Shanmin YUAN Zhejun 1999Nanotechnology1999,,10:1
8From AgI/TiO2 to Ag/TiOz :Effects of the annealing temperature on the compos tions, porous nanostructures, and visible-light photocatalytic properties 显示文摘ZHANG Juzheng IAU Xin GAO Shanmin 2013Ceramics International2013,39,2:1
9Brief Study on Application of New Indoor Lawn in Northern Areas of China显示文摘At present,the development and function research of lawn has become diversified,and the application of lawn has been extended from outdoor to indoor environment. The indoor lawn has functions of absorbing toxic and harmful gases,releasing oxygen,increasing air humidity and regulating temperature. It can effectively improve the indoor air quality of northern areas,purify and beautify the home environment.This paper elaborated the purpose and significance of the application of new indoor lawn,the establishment methods of the indoor lawn,and the application design of the indoor lawn landscape.Yinghua LUO Shanmin QU Xiangping LIU Chenghao JIN 2019Asian Agricultural Research2019,11,4:1
10Triptolide inhibits the growth and metastasis of solid tumors显示文摘Shanmin Yang Jinguo Chen Zhen Guo 2003Mol Cancer Ther2003,2,:1
11The stratigraphical division of DC-2 columnar core from the East China Sea显示文摘Huang Qingfu Gou Shuming Sun Weimin Shen Xunxi Xu Shanmin Cang Shuxi 0,,01:1
12Optimal maintenance policies underdifferent operational schedules显示文摘SHANMIN W DEREK C 2005IEEE Transactions on Reli-ability2005,54,2:1
13Triterpenoid saponins from the from the fruits of Aesculus pavia显示文摘ZHIZHEN ZHANG SHIYOU LI SHANMIN ZHANG 2006Phytochemistry2006,67,:1
14Arterial oxygen saturation in Tibetan and Han infants born in Lhasa, Tibet显示文摘Niermeyer S Yang P Shanmin A 1995N Engl J Med1995,333,19:1
15Efficient frequency domain selective scrambling of digital video显示文摘ZENG Wenjun LEI Shanmin 2003IEEE Transactions on Multimedia2003,5,1:1
16Synthesis of Stoichiometric and Bulk CrN through a Solid‐State Ion‐Exchange Reaction显示文摘Miao Chen Shanmin Wang Jianzhong Zhang Duanwei He Yusheng Zhao 2012Chem. Eur. J2012,,48:1
17Controlled preparation and self-assembly of NdVO_4 nanocrystals显示文摘Phase-pure t-NdVO_4 nanocrystals with different shapes have been synthesized by facile and repeatable hydrothermal methods. The as-synthesized t-NdVO_4 nanoparticles were characterized by various techniques of X-ray diffraction(XRD). scanning electron microscope(SEM) and transmission electron microscope(TEM). The growth process and assembly behavior of t-NdVO_4 nanorod arrays were investigated. The results show that the morphology of t-NdV04 nanocrystals is greatly related to the pH value of precursor solution and that strong basic solution is not in favor of the formation of t-NdVO_4 nanoparticles. Due to the strong adhesive action and stabilization of OH^-ions to some crystal faces of NdVO_4, neodymium vanadate crystallite grows into oriented short nanorods and then into nanorod arrays. The shape, crystalline and dimension of NdVO_4 nanocrystals can be effectively governed in our work.Li Tian Yan Li Huifeng Wang Shanmin Chen Jinjing Wang Zhen Guo Qiang Liu Qi Luo Yingjie Li Fafa Wu 2018Journal of Rare Earths2018,36,2:1
18Serum decoy receptor 3, a potential new biomarker for sepsis显示文摘Yan-Qiang Hou Ping Xu Mei Zhang Deping Han Liang Peng Dong-Yu Liang Shanmin Yang Zhenhuan Zhang Jinsheng Hong Xiao-Li Lou Lurong Zhang Sunghee Kim 20122012 (7-8)2012,,7:1
19Cytochrome P450s in algae:Bioactive natural product biosynthesis and light-driven bioproduction显示文摘Algae are a large group of photo synthetic organisms responsible for approximately half of the earth’s total photosynthesis.In addition to their fundamental ecological roles as oxygen producers and as the food base for almost all aquatic life,algae are also a rich source of bioactive natural products,including several clinical drugs.Cytochrome P450 enzymes(P450s) are a superfamily of biocatalysts that are extensively involved in natural product biosynthesis by mediating various types of reactions.In the post-genome era,a growing number of P450 genes have been discovered from algae,indicating their important roles in algal life-cycle.However,the functional studies of algal P450s remain limited.Benefitting from the recent technical advances in algae cultivation and genetic manipulation,the researches on P450s in algal natural product biosynthesis have been approaching to a new stage.Moreover,some photoauto trophic algae have been developed into 'photo-bioreactors' for heterologous P450s to produce high-value added pharmaceuticals and chemicals in a carbon-neutral or carbon-negative manner.Here,we comprehensively review these advances of P450 studies in algae from 2000 to 2021.Shanmin Zheng Jiawei Guo Fangyuan Cheng Zhengquan Gao Lei Du Chunxiao Meng Shengying Li Xingwang Zhang 2022Acta Pharmaceutica Sinica B2022,12,6:0
20Ti^(3+) self-doped TiO_2 photoelectrodes for photoelectrochemical water splitting and photoelectrocatalytic pollutant degradation显示文摘To improve the harvesting of visible light and reduce the recombination of photogenerated electrons and holes,Ti^(3+)self-doped Ti O_2 nanoparticles were synthesized and assembled into photoanodes with high visible light photoelectrochemical properties.X-ray diffraction,transmission electron microscopy,X-ray photoelectron spectra,electron resonance spectroscopy and energy dispersive X-ray spectra were used to characterize the structure,crystallinity,morphology and other properties of the obtained nanoparticles.UV–visible diffuse reflectance spectra showed that the Ti^(3+)self-doped Ti O_2 nanoparticles had a strong absorption between 400 and 800 nm.Moreover,when hydrothermal treatment time was prolonged to 22 h,the heterogeneous junction was formed between the anatase and rutile Ti O_2,where the anatase particles exposed highly active {001} facets.Under visible light irradiation,the Ti^(3+)self-doped Ti O_2 electrode exhibited an excellent photoelectrocatalytic degradation of rhodamine B(Rh B) and water splitting performance.Intriguingly,by selecting an appropriate hydrothermal time,the high photoconversion efficiency of 1.16% was achieved.Chaoyi Wu Zhenggang Gao Shanmin Gao Qingyao Wang Hui Xu Zeyan Wang Baibiao Huang Ying Dai 2016Journal of Energy Chemistry2016,25,4:0
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