Zobrazeno 1 - 10
of 58
pro vyhledávání: '"X. Wendy Gu"'
Publikováno v:
Nature Communications, Vol 15, Iss 1, Pp 1-10 (2024)
Abstract Colloidal crystals are used to understand fundamentals of atomic rearrangements in condensed matter and build complex metamaterials with unique functionalities. Simulations predict a multitude of self-assembled crystal structures from anisot
Externí odkaz:
https://doaj.org/article/02252e282a0141158e5ae317dbf98ac4
Autor:
Qi Li, Dongming Zhou, Jinsong Chai, Woong Young So, Tong Cai, Mingxing Li, Linda A. Peteanu, Ou Chen, Mircea Cotlet, X. Wendy Gu, Haiming Zhu, Rongchao Jin
Publikováno v:
Nature Communications, Vol 11, Iss 1, Pp 1-9 (2020)
Excited-state structural and electronic changes, observed in molecules, are hampered in nanomaterials. Here the authors identify structural distortion and electron redistribution in three photoexcited gold nanoclusters, connecting molecular and nanoc
Externí odkaz:
https://doaj.org/article/af129976ecb84a9fbf37e5ee07ed644b
Autor:
Radhika P. Patil, David Doan, Zachary H. Aitken, Shuai Chen, Mehrdad T. Kiani, Christopher M. Barr, Khalid Hattar, Yong-Wei Zhang, X. Wendy Gu
Publikováno v:
Nature Communications, Vol 11, Iss 1, Pp 1-9 (2020)
Fabricating and mechanically testing nanoarchitected materials remains a challenge. Here, the authors use colloidal synthesis to fabricate Au-Ag hollow nanoboxes and investigate the effect of either a rough or a smooth nanobox surface on the mechanic
Externí odkaz:
https://doaj.org/article/c2ef017218894f1e99253368308b7e50
Autor:
Kunyuan Lu, Xing Meng, Zeke Liu, Jun Chen, Yongjie Wang, Yannan Zhang, Xuliang Zhang, Erik Sarnello, Guozheng Shi, Radhika P. Patil, Wei Deng, Sijie Zhou, Mengfan Gu, Yaxu Zhong, Soojin Jeong, X. Wendy Gu, Tao Li, Xingchen Ye, Wanli Ma
Publikováno v:
Cell Reports Physical Science, Vol 1, Iss 9, Pp 100183- (2020)
Summary: The long alkyl ligands on nanocrystal (NC) surfaces must be exchanged with short ligands to render NC films semiconducting for optoelectronic applications. It has become the consensus that through this process, it is unavoidable that detrime
Externí odkaz:
https://doaj.org/article/0284f6dd9ad54d7fb6dee12ad02227e2
Publikováno v:
Journal of Materials Science & Technology. 141:116-123
Autor:
Andrew C. Lee, Abhinav Parakh, Andrew Sleugh, Ottman A. Tertuliano, Sebastian Lam, Johanna Nelson Weker, Peter Hosemann, X. Wendy Gu
Publikováno v:
International Journal of Hydrogen Energy. 48:1968-1978
Autor:
Qi Li, Charles J. Zeman, Bora Kalkan, Kristin Kirschbaum, Christopher G. Gianopoulos, Abhinav Parakh, David Doan, Andrew C. Lee, John Kulikowski, George C. Schatz, Guoyin Shen, Martin Kunz, X. Wendy Gu
Publikováno v:
Nano Letters. 23:132-139
The ability to gradually modify the atomic structures of nanomaterials and directly identify such structural variation is important in nanoscience research. Here, we present the first example of a high-pressure single-crystal X-ray diffraction analys
Autor:
Ruijuan Xu, Kevin J. Crust, Varun Harbola, Rémi Arras, Kinnary Y. Patel, Sergey Prosandeev, Hui Cao, Yu‐Tsun Shao, Piush Behera, Lucas Caretta, Woo Jin Kim, Aarushi Khandelwal, Megha Acharya, Melody M. Wang, Yin Liu, Edward S. Barnard, Archana Raja, Lane W. Martin, X. Wendy Gu, Hua Zhou, Ramamoorthy Ramesh, David A. Muller, Laurent Bellaiche, Harold Y. Hwang
Publikováno v:
Advanced Materials. 35
Autor:
Claire A. McLellan, Chris Siefe, Jason R. Casar, Chunte Sam Peng, Stefan Fischer, Alice Lay, Abhinav Parakh, Feng Ke, X. Wendy Gu, Wendy Mao, Steven Chu, Miriam B. Goodman, Jennifer A. Dionne
Publikováno v:
J Phys Chem Lett
Upconverting nanoparticles (UCNPs) are an emerging platform for mechanical force sensing at the nanometer scale. An outstanding challenge in realizing nanometer-scale mechano-sensitive UCNPs is maintaining a high mechanical force responsivity in conj
Publikováno v:
Soft Matter. 18:1532-1539
Optical and confocal microscopy is used to image the self-assembly of microscale colloidal particles. The density and size of self-assembled structures is typically quantified by hand, but this is extremely tedious. Here, we investigate whether machi