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Fabrication and applications of van der Waals heterostructures 被引量:2
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作者 Junlei Qi Zongxiao Wu +6 位作者 Wenbin Wang kai bao Lingzhi Wang Jingkun Wu Chengxuan Ke Yue Xu Qiyuan He 《International Journal of Extreme Manufacturing》 SCIE EI CAS CSCD 2023年第2期149-169,共21页
Van der Waals heterostructures(vdWHs) are showing considerable potential in both fundamental exploration and practical applications. Built upon the synthetic successes of(two-dimensional) 2D materials, several synthet... Van der Waals heterostructures(vdWHs) are showing considerable potential in both fundamental exploration and practical applications. Built upon the synthetic successes of(two-dimensional) 2D materials, several synthetic strategies of vdWHs have been developed,allowing the convenient fabrication of diverse vdWHs with decent controllability, quality, and scalability. This review first summarizes the current state of the art in synthetic strategies of vdWHs, including physical combination, deposition, solvothermal synthesis, and synchronous evolution. Then three major applications and their representative vdWH devices have been reviewed, including electronics(tunneling field effect transistors and 2D contact),optoelectronics(photodetector), and energy conversion(electrocatalysts and metal ion batteries), to unveil the potentials of vdWHs in practical applications and provide the general design principles of functional vdWHs for different applications. Besides, moiré superlattices based on vdWHs are discussed to showcase the importance of vdWHs as a platform for novel condensed matter physics. Finally, the crucial challenges towards ideal vdWHs with high performance are discussed, and the outlook for future development is presented. By the systematical integration of synthetic strategies and applications, we hope this review can further light up the rational designs of vdWHs for emerging applications. 展开更多
关键词 2D materials van der Waals heterostructures gas-phase deposition solvothermal synthesis synchronous evolution
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Total Synthesis of Three New Dihydrostilbenes from Bulbophllum odoratissimum 被引量:1
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作者 Jin Guang LIN Wei Ge ZHANG +5 位作者 Rui ZHAO Ze Yu NIU kai bao Dai Lin LIU Nai Li WANG Xin Shen YAO 《Chinese Chemical Letters》 SCIE CAS CSCD 2006年第3期307-309,共3页
A total synthesis of three new dihydrostilbenes, 1, 2 and 3, which were isolated from Bulbophyllum odoratissimum Lindl. with significant cytotoxicity toward human cancer cell lines, was developed via Homer reaction et... A total synthesis of three new dihydrostilbenes, 1, 2 and 3, which were isolated from Bulbophyllum odoratissimum Lindl. with significant cytotoxicity toward human cancer cell lines, was developed via Homer reaction etc. The natural products 1, 2 and 3 were obtained in 5.8%, 6.6% and 5.9%, respectively. 展开更多
关键词 Dihydrostilbene total synthesis Bulbophyllum odoratissimum Lindl.
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A Novel Oxidative N-Demethylation of 12-Membered Macrolide with Lead Tetraacetate
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作者 Wei Ge ZHANG Ying Hua JIN +4 位作者 Ping QI kai bao Jin Guang LIN Nai Li WANG Xin Shen YAO 《Chinese Chemical Letters》 SCIE CAS CSCD 2006年第1期9-11,共3页
Reaction of 12-membered macrolide 1 with lead tetraacetate in dichloromethane afforded an unexpected, novel oxidative N-demethyl product 3.
关键词 Oxidative N-demethylation 12-membered macrolide lead tetraacetate.
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Molecule-based vertical transistor via intermolecular charge transport throughπ-πstacking
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作者 Cheng Liu Cheng Fu +9 位作者 Lingyu Tang Jianghua Wu Zhangyan Mu Yamei Sun Yanghang Pan Bailin Tian kai bao Jing Ma Qiyuan He Mengning Ding 《Nano Research》 SCIE EI CSCD 2024年第5期4573-4581,共9页
Theπ-πstacking is a well-recognized intermolecular interaction that is responsible for the construction of electron hopping channels in numerous conducting frameworks/aggregates.However,the exact role ofπ-to-πchan... Theπ-πstacking is a well-recognized intermolecular interaction that is responsible for the construction of electron hopping channels in numerous conducting frameworks/aggregates.However,the exact role ofπ-to-πchannels within typical single crystalline organic semiconductors remains unclear as the orientations of these molecules are diverse,and their control usually requires additional side chain groups that misrepresent the intrinsic properties of the original semiconducting molecules.Therefore,the construction of conduction channels with intrinsicπ-πstacking in the molecule-based device is crucial for the utilization of their unique transport characteristics and understanding of the transport mechanism.To this end,we present a molecular intercalation strategy that integrates two-dimensional layered materials with functional organic semiconductor molecules for functional molecule-based electronics.Various organic semiconductor molecules can be effectively intercalated into the van der Waals gaps of semi-metallic TaS_(2) withπ-πstacking configuration and controlled intercalant content.Our results show that the vertical charge transport in the stacking direction shows a tunneling-dominated mechanism that strongly depends on the molecular structures.Furthermore,we demonstrated a new type of molecule-based vertical transistor in which TaS_(2) andπ-πstacked organic molecules function as the electrical contact and the active channel,respectively.On/off ratios as high as 447 are achieved under electrostatic modulation in ionic liquid,comparable to the current state-of-the-art molecular transistors.Our study provides an ideal platform for probing intrinsic charge transport acrossπ-πstacked conjugated molecules and also a feasible approach for the construction of high-performance molecule-based electronic devices. 展开更多
关键词 π-πstacking electrochemical intercalation organic semiconductor electrical transport tunneling field effect transistor
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