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9篇 您的检索式:作者名="Hongbian Li"
    题名 作者 年代 出处 被引量
1A carbon-based 3D current collector with surface protection for Li metal anode显示文摘因为它为这类房间展出最高特定的能力和最低氧化还原作用潜力,锂金属为 Li-ion-based 电池被认为理想的阳极材料。然而,李树突,不稳定的稳固的电解质分裂期间,低 Coulombic 效率,和安全危险的生长显著地妨碍了金属性的李阳极的实际申请。此处,我们求婚一三维(3D ) 碳 nanotube 海绵(CNTS ) 作为一位李免职主人。CNTS 的高特定的表面区域为李成核启用同质的费用分发并且最小化有效当前的密度克服树突生长。另外的保角的艾尔 2 由原子层免职(ALD ) 涂的 CNTS 上的 O 3 层要用体力地由于好化学稳定性和层的高机械力量保护李金属电极 / 电解质接口。Li@ALD-CNTS 电极展出稳定的电压侧面,小过电位在在 1.0 妈骑车的 100 h 上从 16 ~ 30Ying Zhang Boyang Liu Emily Hitz Wei Luo Yonggang Yao Yiju Li diaqi Dai Chaoji Chen Yanbin Wang Chunpeng Yang Hongbian Li Liangbing Hu 2017Nano Research2017,10,4:11
2Templated synthesis of Ti02 nanotube macrostructures and their photocatalytic properties显示文摘Hongbian Li Qiaoyu Zhou Yuntian Gao Xuchun Gui Long Yang Mingde Du Enzheng Shi Jidong Shi Anyuan Cao Ying Fang 2015Nano Research2015,8,3:7
3Bio-inspired micro/nanostructures for flexible and stretchable electronics显示文摘The remarkable ability of biological systems to sense and adapt to complex environmental conditions has inspired the design of next-generation electronics with advanced functionalities.This review focuses on emerging bio-inspired strategies for the development of flexible and stretchable electronics that can accommodate mechanical deformations and integrate seamlessly with biological systems.We will provide an overview of the practical considerations in the materials and structure designs of flexible and stretchable electronics.Recent progress in bio-inspired pressure/strain sensors,stretchable electrodes,mesh electronics,and flexible energy devices are then discussed,with an emphasis on their unconventional micro/nanostructure designs and advanced functionalities.Finally,current challenges and future perspectives are identified and discussed.Hongbian Li Suye Lv Ying Fang 2020Nano Research2020,13,5:5
4Flexible and biocompatible nanopaper-based electrode arrays for neural activity recording显示文摘Yichuan Guo Zhiqiang Fang Mingde Du Long Yang Leihou Shao Xiaorui Zhang Li Li Jidong Shi Jinsong Tao Jinfen Wang Hongbian Li Ying Fang 2018Nano Research2018,11,10:3
5Colloidal antireflection coating improves graphene-silicon solar eells显示文摘Shi Enzheng Li Hongbian Yang Long 2013Nano Lett2013,13,:1
6Colloidal antire flection coating improves graphene-silicon solar cells显示文摘Shi Enzheng Li Hongbian Long Yang 2013Nano Letter2013,13,4:1
7Graphene-CdSe Nanobelt Solar Cells with Tunable Configurations显示文摘我们联合了二平面 nanostructures, graphene 和 CdSe nanobelts,到有大概 0.1% 的大约 0.5 V 和房间效率的开电路的电压的构造 Schottky 连接太阳能电池。由盖住,透明 graphene 或碳 nanotube (CNT ) 沿着肉眼可见地长的 CdSe nanobelts 在选择位置上拍摄,我们从单个或多重的装配 nanobelts 与许多不同配置和平行连接表明了活跃太阳能电池的制造。graphene-CdSe nanobelt 太阳能电池这里报导了表演在创造多样的设备体系结构的大灵活性,和力量基于装配 nanobelt 数组和有图案的 graphene 为房间集成被扩大规模(或 CNT ) 电影。Luhui Zhang Lili Fan Zhen Li Enzheng Shi Xinming Li Hongbian Li Chunyan Ji Yi Jia Jinquan Wei Kunlin Wang Hongwei Zhu Dehai Wu Anyuan Cao 2011Nano Research2011,4,9:1
8Recent developments in multifunctional neural probes for simultaneous neural recording and modulation显示文摘Neural probes are among the most widely applied tools for studying neural circuit functions and treating neurological disorders.Given the complexity of the nervous system,it is highly desirable to monitor and modulate neural activities simultaneously at the cellular scale.In this review,we provide an overview of recent developments in multifunctional neural probes that allow simultaneous neural activity recording and modulation through different modalities,including chemical,electrical,and optical stimulation.We will focus on the material and structural design of multifunctional neural probes and their interfaces with neural tissues.Finally,future challenges and prospects of multifunctional neural probes will be discussed.Hongbian Li Jinfen Wang Ying Fang 2023Microsystems & Nanoengineering2023,9,1:1
9CuI-Si Heterojunction Solar Cells with Carbon Nanotube Films as Flexible Top-Contact Electrodes显示文摘我们作为一个透明电极与碳 nanotubes (CNT ) 报导 CuI-Si 异质接面太阳能电池的制造。一个灵活 CNT 网络被转移到多晶的 CuI 层的顶上,做有与内在的 CuI 的好接触的保角的涂层。太阳能电池在 6% ~ 10.5% 的范围显示出力量变换效率,当在设备在空中被存储为 8 天以后,效率降级是不到 10% 时。与象铟听氧化物(ITO ) 那样的常规僵硬电极相比玻璃, CNT 电影的灵活性与活跃的层保证更好的接触并且为出版社接触电极移开需要。降级的房间能由 CNT 电极做的酸恢复他们的原来的表演。我们的结果建议 CNT 电影与不平的表面是为不平的材料和结构的合适的电的接触。Peixu Li ShanshanWang Yi Jia Zhen Li Chunyan Ji Luhui Zhang Hongbian Li Enzheng Shi Zuqiang Bian Chunhui Huang Jinquan Wei Kunlin Wang Hongwei Zhu Dehai Wu Anyuan Cao 2011Nano Research2011,4,10:0
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