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Dive into the research topics where Samuel Cartmell is active.

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Featured researches published by Samuel Cartmell.


Scientific Reports | 2015

Micro-battery Development for Juvenile Salmon Acoustic Telemetry System Applications

Honghao Chen; Samuel Cartmell; Qiang Wang; Terence Lozano; Zhiqun Deng; Huidong Li; Xilin Chen; Yong Yuan; Mark E. Gross; Thomas J. Carlson; Jie Xiao

The Endangered Species Act requires actions that improve the passage and survival rates for migrating salmonoids and other fish species that sustain injury and mortality when passing through hydroelectric dams. To develop a low-cost revolutionary acoustic transmitter that may be injected instead of surgically implanted into the fish, one major challenge that needs to be addressed is the micro-battery power source. This work focuses on the design and fabrication of micro-batteries for injectable fish tags. High pulse current and required service life have both been achieved as well as doubling the gravimetric energy density of the battery. The newly designed micro-batteries have intrinsically low impedance, leading to significantly improved electrochemical performances at low temperatures as compared with commercial SR416 batteries. Successful field trial by using the micro-battery powered transmitters injected into fish has been demonstrated, providing an exemplary model of transferring fundamental research into practical devices with controlled qualities.


ACS Applied Materials & Interfaces | 2017

Wide temperature electrolytes for lithium-ion batteries

Qiuyan Li; Shuhong Jiao; Langli Luo; Michael S. Ding; Jianming Zheng; Samuel Cartmell; Chongmin Wang; Kang Xu; Ji-Guang Zhang; Wu Xu

Formulating electrolytes with solvents of low freezing points and high dielectric constants is a direct approach to extend the service-temperature range of lithium (Li)-ion batteries (LIBs). In this study, we report such wide-temperature electrolyte formulations by optimizing the ethylene carbonate (EC) content in the ternary solvent system of EC, propylene carbonate (PC), and ethyl methyl carbonate (EMC) with LiPF6 salt and CsPF6 additive. An extended service-temperature range from -40 to 60 °C was obtained in LIBs with lithium nickel cobalt aluminum oxide (LiNi0.80Co0.15Al0.05O2, NCA) as cathode and graphite as anode. The discharge capacities at low temperatures and the cycle life at room temperature and elevated temperatures were systematically investigated together with the ionic conductivity and phase-transition behaviors. The most promising electrolyte formulation was identified as 1.0 M LiPF6 in EC-PC-EMC (1:1:8 by wt) with 0.05 M CsPF6, which was demonstrated in both coin cells of graphite∥NCA and 1 Ah pouch cells of graphite∥LiNi1/3Mn1/3Co1/3O2. This optimized electrolyte enables excellent wide-temperature performances, as evidenced by the high capacity retention (68%) at -40 °C and C/5 rate, significantly higher than that (20%) of the conventional LIB electrolyte, and the nearly identical stable cycle life as the conventional LIB electrolyte at room temperature and elevated temperatures up to 60 °C.


Journal of Power Sources | 2015

Lithium and lithium ion batteries for applications in microelectronic devices: A review

Yuxing Wang; Bo Liu; Qiuyan Li; Samuel Cartmell; Seth Ferrara; Zhiqun Daniel Deng; Jie Xiao


Advanced Energy Materials | 2016

Highly Stable Operation of Lithium Metal Batteries Enabled by the Formation of a Transient High‐Concentration Electrolyte Layer

Jianming Zheng; Pengfei Yan; Donghai Mei; Mark H. Engelhard; Samuel Cartmell; Bryant J. Polzin; Chongmin Wang; Ji-Guang Zhang; Wu Xu


Nano Energy | 2018

Fundamental understanding and rational design of high energy structural microbatteries

Yuxing Wang; Qiuyan Li; Samuel Cartmell; Huidong Li; Sarah Mendoza; Ji-Guang Zhang; Zhiqun Daniel Deng; Jie Xiao


Journal of Power Sources | 2017

A reliable sealing method for microbatteries

Yuxing Wang; Samuel Cartmell; Qiuyan Li; Jie Xiao; Huidong Li; Zhiqun Daniel Deng; Ji-Guang Zhang


231st ECS Meeting (May 28 - June 1, 2017) | 2017

Developments in Benchtop Spectrometers: A High Access XANES User Facility and a Compact Spectrometer for Energy Storage Research

Evan P. Jahrman; Gerald T. Seidler; Alex Ditter; William M. Holden; Oliver R. Hoidn; Devon R. Mortensen; Ryan A. Valenza; Liam Bradshaw; Stosh A. Kozimor; Mark E. Bowden; Jason Zhang; Mark E. Gross; Samuel Cartmell; Qiuyan Li; Vijayakumar Murugesan; Niri Govind; Wei Wang


PRiME 2016/230th ECS Meeting (October 2-7, 2016) | 2016

Optimization of Dual-Salt Electrolytes for Rechargeable Lithium Metal Batteries

Shuhong Jiao; Jianming Zheng; Samuel Cartmell; Ji-Guang Zhang; Wu Xu


PRiME 2016/230th ECS Meeting (October 2-7, 2016) | 2016

(Invited) CsPF 6 and Propylene Carbonate in Conventional LiPF 6 /Carbonate Electrolytes for Enhanced Lithium-Ion Battery Performances in Wide Temperature Range

Wu Xu; Hongfa Xiang; Jianming Zheng; Qiuyan Li; Donghai Mei; Pengfei Yan; Ruiguo Cao; Mark H. Engelhard; Shuhong Jiao; Samuel Cartmell; Bryant J. Polzin; Chongmin Wang; Ji-Guang Zhang


Advanced Energy Materials | 2016

Lithium Metal Batteries: Highly Stable Operation of Lithium Metal Batteries Enabled by the Formation of a Transient High-Concentration Electrolyte Layer (Adv. Energy Mater. 8/2016)

Jianming Zheng; Pengfei Yan; Donghai Mei; Mark H. Engelhard; Samuel Cartmell; Bryant J. Polzin; Chongmin Wang; Ji-Guang Zhang; Wu Xu

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Ji-Guang Zhang

Battelle Memorial Institute

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Jianming Zheng

Battelle Memorial Institute

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Qiuyan Li

Pacific Northwest National Laboratory

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Wu Xu

Battelle Memorial Institute

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Chongmin Wang

Battelle Memorial Institute

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Jie Xiao

Battelle Memorial Institute

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Bryant J. Polzin

Argonne National Laboratory

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Donghai Mei

Pacific Northwest National Laboratory

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Huidong Li

Pacific Northwest National Laboratory

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Mark H. Engelhard

Environmental Molecular Sciences Laboratory

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