J
Jake C. Russell
Researcher at Columbia University
Publications - 15
Citations - 1210
Jake C. Russell is an academic researcher from Columbia University. The author has contributed to research in topics: Phonon & van der Waals force. The author has an hindex of 7, co-authored 13 publications receiving 876 citations. Previous affiliations of Jake C. Russell include St. Jude Children's Research Hospital & University of Chicago.
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Journal ArticleDOI
The genomic landscape of diffuse intrinsic pontine glioma and pediatric non-brainstem high-grade glioma
Gang Wu,Alexander K. Diaz,Alexander K. Diaz,Barbara S. Paugh,Sherri Rankin,Bensheng Ju,Yongjin Li,Xiaoyan Zhu,Chunxu Qu,Xiang Chen,Junyuan Zhang,John Easton,Michael N. Edmonson,Xiaotu Ma,Charles Lu,Panduka Nagahawatte,Erin Hedlund,Michael Rusch,Stanley Pounds,Tong Lin,Arzu Onar-Thomas,Robert Huether,Richard W. Kriwacki,Matthew Parker,Pankaj Gupta,Jared Becksfort,Lei Wei,Heather L. Mulder,Kristy Boggs,Bhavin Vadodaria,Donald Yergeau,Jake C. Russell,Kerri Ochoa,Robert S. Fulton,Lucinda Fulton,Chris Jones,Frederick A. Boop,Alberto Broniscer,Cynthia Wetmore,Amar Gajjar,Li Ding,Elaine R. Mardis,Richard K. Wilson,Michael R. Taylor,James R. Downing,David W. Ellison,Jinghui Zhang,Suzanne J. Baker,Suzanne J. Baker +48 more
TL;DR: In this article, the authors analyzed 127 pediatric HGGs, including diffuse intrinsic pontine gliomas (DIPGs) and non-brainstem HGG (NBS-HGGs), by whole-genome, whole-exome and/or transcriptome sequencing.
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High-performance organic pseudocapacitors via molecular contortion
Jake C. Russell,Victoria A. Posey,Jesse Gray,Richard May,Douglas A. Reed,Hao Zhang,Lauren E. Marbella,Michael L. Steigerwald,Yuan Yang,Xavier Roy,Colin Nuckolls,Samuel R. Peurifoy +11 more
TL;DR: In this article, the authors describe an organic system composed of perylene diimide and hexaazatrinaphthylene exhibiting a specific capacitance of 689 ǫ f 0.
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Designing Three-Dimensional Architectures for High-Performance Electron Accepting Pseudocapacitors.
TL;DR: This work describes a porous structure composed of perylene diimide and triptycene subunits and demonstrates its remarkable performance as a pseudocapacitor electrode material and establishes molecular design and synthesis as a powerful approach for creating tunable energy storage materials.
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Modulating the hierarchical fibrous assembly of Au nanoparticles with atomic precision.
TL;DR: The authors realize atomic‐level control over the 1D, 2D and hierarchical 3D assembly of Au nanoparticles by modulating the site-specific surface ligands and associated counterions.
Journal ArticleDOI
Solution-Processed, Ultrathin Solar Cells from CdCl3–-Capped CdTe Nanocrystals: The Multiple Roles of CdCl3– Ligands
Hao Zhang,J. Matthew Kurley,Jake C. Russell,Jaeyoung Jang,Dmitri V. Talapin,Dmitri V. Talapin +5 more
TL;DR: A new CdCl3(-)-capped CdTe NC ink is designed by taking advantage of novel surface chemistry to demonstrate thin-film solar cells with power conversion efficiency over 10%, a record efficiency for sub-400 nm thick Cd Te absorber layer.