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Carbonization of Ni-doped Phenol Resin Under Various Conditions
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作者 WEI Guoping ZHU Boquan +1 位作者 LI Xiangcheng MA Zheng 《China's Refractories》 CAS 2017年第2期25-30,共6页
Ni-doped phenol resin was prepared with 1∶100 mass ratio of Ni( NO_3)_2·6H_2O to thermosetting phenol resin to optimize the structure and properties of pyrolytic carbon derived from phenol resin and increase i... Ni-doped phenol resin was prepared with 1∶100 mass ratio of Ni( NO_3)_2·6H_2O to thermosetting phenol resin to optimize the structure and properties of pyrolytic carbon derived from phenol resin and increase its carbon yield. The specimens were cured at 200 ℃ and carbonized under different atmospheres( carbon-embedded atmosphere and Ar atmosphere) and at different temperatures( 600,800,1000 and 1200 ℃) for3 h,respectively. The carbon yield was measured. Thermal decomposition characteristics of Ni-doped phenol resin,and the oxidation resistance,phase composition and microstructure of pyrolytic carbon were characterized by differential scanning calorimetry,X-ray diffraction,energy dispersive spectroscopy, scanning electron microscopy and transmission electron microscopy. The results show that the carbon yield of Ni-doped phenol resin carbonized at800 or 1 000 ℃ is increased significantly,compared with that without any dopants. The graphitization degree of pyrolytic carbon structure derived from Ni-doped phenol resin increases with the increase of carbonization temperature. The massive multi-wall carbon nanotubes of 50-100 nm in diameter and of micrometre scale in length are generated at 1000 ℃. Compared with the carbonembedded atmosphere,carbon nanotubes can be more easily generated in Ar atmosphere,resulting in higher carbon yield and degree of crystallinity of the pyrolyticcarbon derived from Ni-doped phenol resin. The oxidation resistance of the pyrolytic carbon derived from Ni-doped phenol resin at 1200 ℃ is improved significantly and its highest oxidation temperature is increased by about 84℃,compared with that from Ni free phenol resin. 展开更多
关键词 phenol resin nickel-doping carboniza-tion pyrolytic carbon carbon nanotubes oxidation re-sistance
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Novel ultra-wideband fluorescence material:Defect state control based on nickel-doped semiconductor QDs embedded in inorganic glasses
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作者 Zheng Wang Feifei Huang +3 位作者 Muzhi Cai Xianghua Zhang Degang Deng Shiqing Xu 《Journal of Materiomics》 SCIE CSCD 2023年第2期338-344,共7页
In recent years,the development of an environmentally friendly quantum dots(QDs)embedded luminous solid by a simple method has attracted considerable attention.In this study,semiconductor ZnS QDs were successfully pre... In recent years,the development of an environmentally friendly quantum dots(QDs)embedded luminous solid by a simple method has attracted considerable attention.In this study,semiconductor ZnS QDs were successfully prepared in an inorganic matrix of amorphous glass,which yielded beneficial broadband emission in the long-wavelength region of the visible range.The strong red emission belonged to the defect state energy level of the ZnS QDs,which could be enhanced by incorporation of nickel ions into the fixed matrix to regulate the defects state.The novel material had a small self-absorption,wide excitation and emission ranges,and thus potential applications in light-conversion devices,luminescent solar concentrators,and solar cell cover glasses. 展开更多
关键词 ZnS quantum dots glass nickel-doping Defect states Broad-band emission
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Accelerated intermediate conversion through nickel doping into mesoporous Co-N/C nanopolyhedron for efficient ORR
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作者 Jianxin Mao Peng Liu +3 位作者 Jiawen Li Jianyue Yan Shen Ye Wenbo Song 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2022年第10期240-247,I0005,共9页
Engineering non-precious metals into nitrogen-doped carbon is employed to improve electrocatalyst activity towards oxygen reduction reaction(ORR). A nickel-doped Co-N/C mesoporous nanopolyhedron is successfully evolut... Engineering non-precious metals into nitrogen-doped carbon is employed to improve electrocatalyst activity towards oxygen reduction reaction(ORR). A nickel-doped Co-N/C mesoporous nanopolyhedron is successfully evoluted from a Ni-doped ZIF-67 precursor. The Ni & Co synergistic N/C catalyst exhibits a half-wave potential of 0.895 V(vs. reversible hydrogen electrode(RHE)) with a diffusion-limiting current density of 6.1 m A cm^(-2)for alkaline ORR at 1600 r min^(-1), which is competitive to commercial Pt/C in terms of cost, methanol tolerance, and long-term stability. In situ surface-enhanced Raman scattering(SERS) study reveals the formation and fast conversion of superoxide ion(O_(2)^(-)) intermediate on the catalyst surface. Density functional theory(DFT) calculations demonstrate the decrease of energy barrier for potential-determining step(O* protonation) by Co-Ni synergy as well as the reduction of adsorption energy on catalyst surface upon nickel doping. The joint results of in situ SERS study and DFT calculations suggest a favourable ORR process on nickel-doped Co-N/C. 展开更多
关键词 Oxygen reduction reaction nickel-doped Co-N/C mesoporous nanopolyhedron Ni&Co synergy Intermediate conversion In situ SERS study
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液态金属基柔性可穿戴热电冷却结构及冷却性能优化
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作者 杨明坤 李冠锜 +4 位作者 谷悦 宋佳麒 李红 赵修臣 霍永隽 《Science China Materials》 SCIE EI CAS CSCD 2023年第10期4001-4011,共11页
为了提高柔性热电冷却器(TEC)的冷却能力,解决液态金属材料的泄漏问题,同时研究热电腿的尺寸、密度和形状对TEC冷却能力的影响.本文将具有液态核心氧化壳结构的Ni-GaIn(掺镍液态金属)和LMPs(液态金属纳米颗粒)引入柔性TEC中,并针对材料... 为了提高柔性热电冷却器(TEC)的冷却能力,解决液态金属材料的泄漏问题,同时研究热电腿的尺寸、密度和形状对TEC冷却能力的影响.本文将具有液态核心氧化壳结构的Ni-GaIn(掺镍液态金属)和LMPs(液态金属纳米颗粒)引入柔性TEC中,并针对材料的特性,采用“较大的电极”和“三层PDMS”对传统的热电冷却结构进行了改进.采用“大电极”和“三层PDMS”解决了液态金属量大、易泄漏的问题,降低了成本和环境污染,提高了产品可靠性和制造效率.利用有限元分析软件对结构进行了进一步优化,提供了多物理场和多因素影响下的TEC设计方案.与已报道的采用EGaIn互连和传统热电冷却结构的柔性TEC相比,本文制备的两种新型柔性TEC分别具有冷却能力高(7.4℃)和性能稳定(受弯曲变形影响小)的特点. 展开更多
关键词 body temperature regulation flexible thermoelectric cooler nickel-doped liquid metal liquid metal nanoparticles structure optimization
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