Columnar order in jammed LiFePO4 cathodes: ion transport catastrophe and its mitigation.

نویسندگان

  • Kyle C Smith
  • Partha P Mukherjee
  • Timothy S Fisher
چکیده

The high-rate, high-capacity potential of LiFePO4-based lithium-ion battery cathodes has motivated numerous experimental and theoretical studies aiming to realize such performance through nano-sizing, tailoring of particle shape through synthesis conditions, and doping. Here, a granular mechanics study of microstructures formed by dense jammed packings of experimentally and theoretically inspired LiFePO4 particle shapes is presented. A strong dependence of the resultant packing structures on particle shapes is observed, in which columnar structures aligned with the [010] direction inhibit diffusion along [010] in anisotropic LiFePO4. Transport limitations are induced by [010] columnar order and lead to catastrophic performance degradation in anisotropic LiFePO4 electrodes. Further, judicious mixing of nanoplatelets with additive nanoparticles can frustrate columnar ordering and thereby enhance the rate capability of LiFePO4 electrodes by nearly an order of magnitude.

برای دانلود متن کامل این مقاله و بیش از 32 میلیون مقاله دیگر ابتدا ثبت نام کنید

ثبت نام

اگر عضو سایت هستید لطفا وارد حساب کاربری خود شوید

منابع مشابه

Towards High Capacity Li-ion Batteries Based on Silicon-Graphene Composite Anodes and Sub-micron V-doped LiFePO4 Cathodes

Lithium iron phosphate, LiFePO4 (LFP) has demonstrated promising performance as a cathode material in lithium ion batteries (LIBs), by overcoming the rate performance issues from limited electronic conductivity. Nano-sized vanadium-doped LFP (V-LFP) was synthesized using a continuous hydrothermal process using supercritical water as a reagent. The atomic % of dopant determined the particle shap...

متن کامل

In-Situ TEM Electrochemical Processes in Conversion-Based Li-Ion Battery Electrodes

Intercalation-based cathode materials such as LiCoO2 (~140 mAh/g) and LiFePO4 (~160 mAh/g) are predominantly used in lithium-ion batteries because they provide exceptional cycling reversibility [1]. However, these materials have low capacity as they are limited to single electron charge transfer reaction, and thus are unlikely candidates for use in electric vehicles (EVs). Conversion compounds ...

متن کامل

Multiscale Characterization of Degradation Mechanism in LiFePO4 Battery Cathodes with Prolonged Electrochemical Cycling

The scope of the current research is to characterize aging mechanisms in LiFePO4 battery cathodes at the nanometer length scale. For this purpose, we wish to use Electron Energy Loss Spectroscopy (EELS) in the low loss regime in the Transmission Electron Microscope (TEM) to identify and quantify the phases formed in the cathode as the battery is discharged. The above phase identification and qu...

متن کامل

Characterization and Performance of LiFePO4 Thin-Film Cathodes Prepared with Radio-Frequency Magnetron-Sputter Deposition

Characterization and Performance of LiFePO4 Thin-Film Cathodes Prepared with Radio-Frequency Magnetron-Sputter Deposition Jian Hong,* Chunsheng Wang,** Nancy J. Dudney,** and Michael J. Lance Department of Chemical Engineering, Tennessee Technological University, Cookeville, Tennessee 38505, USA Department of Chemical and Biochemical Engineering, University of Maryland, College Park, Maryland 2...

متن کامل

Investigating Charge Compensation in Li (1-x) FePO4

In its application as a cathode material for Li-ion batteries, LiFePO4 shows good thermal stability, high theoretical energy density and low production costs. However, wider application of this material is still limited by poor transport of the charge carriers and poor Li ion transport within the LiFePO4 lattice [1]. This has lead to concerted research efforts how the electronic structure of Li...

متن کامل

ذخیره در منابع من


  با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید

برای دانلود متن کامل این مقاله و بیش از 32 میلیون مقاله دیگر ابتدا ثبت نام کنید

ثبت نام

اگر عضو سایت هستید لطفا وارد حساب کاربری خود شوید

عنوان ژورنال:
  • Physical chemistry chemical physics : PCCP

دوره 14 19  شماره 

صفحات  -

تاریخ انتشار 2012