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11篇 您的检索式:作者名="Shuanghong Tian"
    题名 作者 年代 出处 被引量
1A comparative investigation on absorption performances of three expanded graphite-based complex materials for toluene显示文摘Shande Li Shuanghong Tian Yunfeng Feng Jiajia Lei Piaopiao Wang Ya Xiong 2010Journal of Hazardous Materials2010,,1:1
2Sulfonated poly(fluorenyl ether ketone) membrane prepared via direct polymerization for PEM fuel cell application显示文摘Yulin Chen Yuezhong Meng Shuanjin Wang Shuanghong Tian Yong Chen Allan S. Hay 2006Journal of Membrane Science2006,,1:1
3Synthesis and characterization of sulfonated fluorine-containing poly(arylene ether ketone) for proton exchange membrane显示文摘Shang Xueya Tian Shuanghong Kong Linghuan 2005Journal of Membrane Science2005,266,:1
4Synthesis and characterization of sulfonated fluorine-containing poly (arylene ther ketone) for proton exchange membrane显示文摘Shang Xueya Tian Shuanghong Kong Linghuan 2005Journal of Membrane Science2005,266,:1
5Synthesis and characterization of sulfonated fluorene-containing poly (arylene ether ketone) for proton exchange membrane显示文摘Shang Xueya Tian Shuanghong Kong Linghuan 2005Journal of Membrane Science2005,266,12:1
6Catalytic wet air oxidation of 2-chlorophenol over sewage sludge derived carbon-based catalysts 显示文摘TU Yuting XIONG Ya TIAN Shuanghong 2014Journal of Hazardous Materials2014,276,:1
7显示文摘Xueya Shang Shuanghong Tian Yuezhong Meng 2005J of Membrane Science2005,266,:1
8Fe2(MoO4)3 as an Effective Photo-Fenton-like Catalyst for the Degra- dation of Anionic and Cationic Dyes inaWidepHRange显示文摘Tian Shuanghong Zhang Jialin Chen Jun 2013Industrial & Engineering Chemistry Research2013,52,13:1
9Boosted urea electro-oxidation over Ni_(3)N-based nanocomposite via systematic regulation tactic显示文摘Exploiting high-efficiency Ni-based materials for electrocatalytic urea oxidation reaction(UOR) is critical for urea-related technologies.The catalytic site density,intrinsic activity,charge transfer,and mass diffusion determine overall electrocatalytic efficiency.Simultaneous modulation over the above four factors promises advanced electrocatalysis,yet challenging.Herein we propose a systematic regulation tactic over composition and geometric structure,constructing a nanocomposite comprising Mn doped Ni_(3)N nanoparticles anchored on reduced graphene oxide(rGO/Mn-Ni_(3)N),achieving elegant integration of four design principles into one,thereby eminently boosting UOR.Particularly,Mn doping in Ni_(3)N can modulate electronic state to induce intrinsic activity regulation.Combining metallic Mn-Ni_(3)N with rGO to engineer hierarchical architecture not only promotes charge transfer,but also enriches active site population.Intriguingly,improved hydrophilicity could impart better electrolyte penetration and gas escape.Consequently,such system-optimized rGO/Mn-Ni_(3)N demonstrates state-of-the-art-level UOR electrocatalysis.This work offers a novel paradigm to create advanced catalysts via systematic and integrated modulation.Ping Li Yuqi Huang Quhua Huang Wenqin Li Shuanghong Tian 2023Journal of Energy Chemistry2023,,12:0
10IbNIEL-mediated degradation of IbNAC087 regulates jasmonic acid-dependent salt and drought tolerance in sweet potato显示文摘Sweet potato(Ipomoea batatas[L.]Lam.)is a crucial staple and bioenergy crop.Its abiotic stress tolerance holds significant importance in fully utilizing marginal lands.Transcriptional processes regulate abiotic stress responses,yet the molecular regulatory mechanisms in sweet potato remain unclear.In this study,a NAC(NAM,ATAF1/2,and CUC2)transcription factor,IbNAC087,was identified,which is commonly upregulated in salt-and drought-tolerant germplasms.Overexpression of IbNAC087 increased salt and drought tolerance by increasing jasmonic acid(JA)accumulation and activating reactive oxygen species(ROS)scavenging,whereas silencing this gene resulted in opposite phenotypes.JA-rich IbNAC087-OE(overexpression)plants exhibited more stomatal closure than wild-type(WT)and IbNAC087-Ri plants under NaCl,polyethylene glycol,and methyl jasmonate treatments.IbNAC087 functions as a nuclear transcriptional activator and directly activates the expression of the key JA biosynthesisrelated genes lipoxygenase(IbLOX)and allene oxide synthase(IbAOS).Moreover,IbNAC087 physically interacted with a RING-type E3 ubiquitin ligase NAC087-INTERACTING E3 LIGASE(IbNIEL),negatively regulating salt and drought tolerance in sweet potato.IbNIEL ubiquitinated IbNAC087 to promote 26S proteasome degradation,which weakened its activation on IbLOX and IbAOS.The findings provide insights into the mechanism underlying the IbNIEL-IbNAC087 module regulation of JA-dependent salt and drought response in sweet potato and provide candidate genes for improving abiotic stress tolerance in crops.Xu Li Zhen Wang Sifan Sun Zhuoru Dai Jun Zhang Wenbin Wang Kui Peng Wenhao Geng Shuanghong Xia Qingchang Liu Hong Zhai Shaopei Gao Ning Zhao Feng Tian Huan Zhang Shaozhen He 2024Journal of Integrative Plant Biology2024,66,2:0
11Anomalous metastable hcp Ni nanocatalyst induced by non-metal N doping enables promoted ammonia borane dehydrogenation显示文摘Developing high-performing non-noble transition metal catalysts for H_(2) evolution from chemical hydrogen storage materials is of great significance for the hydrogen economy system, yet challenging. Herein,we present for the first time that anomalous metastable hexagonal close-packed Ni nanoparticles induced by heteroatom N doping encapsulated in carbon(N-hcp-Ni/C) can exhibit admirable catalytic performance for ammonia borane(AB) dehydrogenation, prominently outperforming conventional fcc Ni counterpart with similar morphology and favorably presenting the state-of-the-art level.Comprehensive experimental and theoretical studies unravel that unusual hcp phase engineering of Ni together with N doping could induce charge redistribution and modulate electronic structure, thereby facilitating H_(2)O adsorption and expediting H_(2)O dissociation(rate-determining step). As a result, AB dehydrogenation can be substantially boosted with the assistance of N-hcp-Ni/C. Our proposed strategy highlights that unconventional crystal phase engineering coupled with non-metal heteroatom doping is a promising avenue to construct advanced transition metal catalysts for future renewable energy technologies.Ping Li Yuqi Huang Quhua Huang Ran Chen Jixin Li Shuanghong Tian 2023Journal of Energy Chemistry2023,,4:0
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