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3篇 您的检索式:作者名="Yiyao Peng"
    题名 作者 年代 出处 被引量
1New Localities and Palaeoscolecid Worms from the Cambrian(Stage 4,Series 2)Guanshan Biota in Kunming,Yunnan,South China显示文摘The Guanshan Biota from the Cambrian Stage 4 Wulongqing Formation is a typical Burgess-shale type Lagerst?tte that had witnessed the Cambrian explosion. Here we report two new localities of the Guanshan Biota,which is located at Baimei village,south of Kunming and Xinglong village,Wuding County,Yunnan Province respectively. Both localities produce soft-body fossils and several new taxa,e.g. a new species of palaeoscolecidans(Palaeoscolex xinglongensis sp. nov.) reported herein. The comparative study of the new species with similar form not only indicates that there is a diversification of palaeoscolecid species in Guanshan Biota,but also strengthens the ties between the older Chengjiang Biota and the younger Kaili Biota(and also the coeval Burgess Shale community). Three paleoecological features,including high diversity,little disparity and richness of palaeoscolecid worms,are summarized as a case study to represent the differences between Guanshan and Chengjiang Biota.LIU Jianni HAN Jian LI Jinshu WU Yichen PENG Jie QI Nan YANG Yiyao LI Juan 2016Acta Geologica Sinica(English Edition)2016,90,6:4
2Oxygen-assisted preparation of mechanoluminescent ZnS:Mn for dynamic pressure mapping显示文摘变换机械刺激点亮排放的 Mechanoluminescent 材料在人机器的相互作用为潜在的应用吸引了广泛的注意。这里,我们为 ZnS 的帮助氧的准备报导一条简单、可得到的新奇途径: Mn 粒子由固态在没有相应氧化物的形成的气压的反应。O 2 的存在在 wurtzite 阶段 ZnS 在 S 空缺的形成上有积极影响,导致 Mn 2+ 离子的介绍光中心和浅施主铺平,它能改进电子洞再结合率。O 2 比率和 Mn 2+ 离子做集中在发光效率上有重要效果,它分别地在 1%-20% 和 1 at.%-2 at.% 是最佳的。另外,一台设备基于有 0.032 MPa 1 的优秀压力敏感的 piezo-photonic 效果被制作,它能印射在 situ 从 2.2 ~ 40.6 MPa 的二维的压力分发。这台设备能被用于即时压力印射,聪明的传感器网络,高级安全系统,人机器的接口,和人工的皮肤。Xiandi Wang Rui Ling Yufei Zhang Miaoling Que Yiyao Peng Caofeng Pan 2018Nano Research2018,11,4:1
3Phase engineering of metal nanocatalysts for electrochemical CO_(2) reduction显示文摘The electrochemical CO_(2) reduction reaction(CO_(2)RR)offers a green and sustainable process to convert CO_(2) into valuable chemical stocks and fuels.Metal is one of the most promising types of catalysts to drive an efficient and selective CO_(2)RR.The catalytic performance of metal nanocatalysts is strongly dependent on their structural features.Recently,phase engineering of nanomaterials(PEN)has emerged as a prominent tactic to regulate the catalytic performance of metal nanocatalysts for the CO_(2)RR.A broad range of metal nanocatalysts with conventional and unconventional crystal phases has been developed,and remarkable achievements have been made.This review summarizes the most recent developments in phase engineering of metal nanocatalysts for the electrochemical CO_(2)RR.We first introduce the different crystal phases of metal nanocatalysts used in the CO_(2)RR and then discuss various synthetic strategies for unconventional phases of metal nanocatalysts.After that,detailed discussions of metal nanocatalysts with conventional and unconventional phases,including amorphous phases,are presented.Finally,the challenges and perspectives in this emerging area are discussed.Yanjie Zhai Peng Han Qinbai Yun Yiyao Ge Xiao Zhang Ye Chen Hua Zhang 2022eScience2022,2,5:0
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