期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
课程思政理念下高职院校体育课程与思政教育的融入研究
1
作者 黄燕春 贾东 李毓 《体育科学进展》 2024年第3期551-555,共5页
在教育改革的大背景下,国内高校纷纷响应“三全育人”的号召,实行全面教育改革。课程思政理念与高职院校教育改革相适应,能够充分挖掘出专业课程、素质拓展课程中的育人因素,强化德育目标,提高思政教育水平,将全方位育人的根本思想落实... 在教育改革的大背景下,国内高校纷纷响应“三全育人”的号召,实行全面教育改革。课程思政理念与高职院校教育改革相适应,能够充分挖掘出专业课程、素质拓展课程中的育人因素,强化德育目标,提高思政教育水平,将全方位育人的根本思想落实。高职院校必须结合社会发展形势,把握课程思政的核心理念,在体育课程中凸显思政教育,帮助学生塑造健康体魄,培育健康人格。基于课程思政理念,分析了高职院校体育课程对学生发展的重要作用,探索了思政教育与体育课程的融合重点,提出了体育课程融入思政教育的实践策略。 展开更多
关键词 高职院校 体育教学 课程思政 融合
原文传递
Curing the vulnerable heterointerface via organic-inorganic hybrid hole transporting bilayers for efficient inverted perovskite solar cells
2
作者 Kangrong Yan Ziqiu Shen +3 位作者 yanchun huang Benfang Niu Hongzheng Chen Chang-Zhi Li 《Chinese Chemical Letters》 SCIE CAS CSCD 2024年第6期254-257,共4页
To promote the practices of perovskite photovoltaics,it requires to develop efficient perovskite solar cells(PVSCs)standing long-time operation under the adverse environments.Herein,we demonstrate that the tailor-made... To promote the practices of perovskite photovoltaics,it requires to develop efficient perovskite solar cells(PVSCs)standing long-time operation under the adverse environments.Herein,we demonstrate that the tailor-made conjugated polymers as conductive adhesives stabilized the originally redox-reactive heterointerface between perovskite and metal oxide,facilitating the access of efficient and stable inverted PVSCs.It was revealed that bithiophene and phenyl alternating conjugated polymers with partial glycol chains atop of the metal oxide layer has resulted in effective organic-inorganic hybrid hole transporting bilayers,which allow maintaining efficient hole extraction and transport,meanwhile preventing halide migration to directly contact with the nickel oxide(NiO_(x))layer.As a result,the corresponding inverted PVSCs with the organic-inorganic hole transporting bilayers have achieved an excellent power conversion efficiency of 23.22%,outperforming 20.65% of bare NiO_(x)-based devices.Moreover,the encapsulated PVSCs with organic-inorganic bilayers exhibited the excellent photostability with 91% of the initial efficiency after 1000-h one-sun equivalent illumination in ambient conditions.Overall,this work provides new insights into stabilizing the vulnerable heterointerface for perovskite solar cells. 展开更多
关键词 Perovskite solar cells Conjugated polymer Hole transporting bilayer Charge extraction Heterointerface degradation
原文传递
A multifunctional and scalable fullerene electron transporting material for efficient inverted perovskite solar cells and modules
3
作者 Kangrong Yan Ziqiu Shen +7 位作者 Benfang Niu yanchun huang Di Wang Emely Gu Buyi Yan Jizhong Yao Hongzheng Chen Chang-Zhi Li 《Science China Chemistry》 SCIE EI CAS CSCD 2023年第6期1795-1803,共9页
The interfacial properties between charge transporting material and perovskite(PVSK)play critical roles in governing the photovoltaic performances of perovskite solar cells(PVSCs).Herein,we develop a multifunctional f... The interfacial properties between charge transporting material and perovskite(PVSK)play critical roles in governing the photovoltaic performances of perovskite solar cells(PVSCs).Herein,we develop a multifunctional fulleropyrrolidine(FMG)as an electron transporting material(ETM),which facilitates the construction of efficient and stable inverted PVSCs and modules.It revealed that the facile and scalable FMG possesses not only excellent electron extraction capabilities,but also multi-groups to simultaneously passivate PVSKs via Lewis acid-base and hydrogen bonding interactions.The coating of FMG onto PVSK interestingly yields a dense and interactive layer with the graded ETM-PVSK heterojunction architecture.As a result,FMGbased PVSCs demonstrate a champion efficiency of 23.8%,outperforming 21.0%of PCBM-based devices.FMG could also be utilized to improve photovoltaic performance of large-scale modules.In addition,FMG has successfully elongated the lifetime of the corresponding PVSCs,maintaining 85%of the initial performance after the continuous 60-day one sun equivalent illumination in ambient. 展开更多
关键词 fullerene derivative interface electron transporting material perovskite solar cells
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部