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1d627e155f1661be6a69831b26c9e8d83bf5ed4e | {
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1d65473fad36b710c6fcaa0d659233e4f3f30b51 | {
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{
"authorId": "2146054262",
"name": "Wu Wei"
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"name": "Cheng Zhen-hua"
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{
"authorId": "117146668",
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1d843fc104f4776d95ff02cd4d32b563e16511ed | {
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} | null | https://www.semanticscholar.org/paper/1d843fc104f4776d95ff02cd4d32b563e16511ed | Method for preparig lithium secondary cell silicon/rich-lithium phase composite cathode material by high energy ball milling | The present invention relates to a lithium secondary battery a high-energy ball milling Si / Li-rich phase composite cathode material and belongs to the field of electrochemical power source material. The method comprises the steps of, silicon oxide and lithium metal as a synthetic raw material, silicon monoxide and co... | 2,006 | 0 | null | [
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1d8e27006449814ccd88f5ebb86f3fc577f831e7 | {
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} | null | https://www.semanticscholar.org/paper/1d8e27006449814ccd88f5ebb86f3fc577f831e7 | Nanoscale Grain Refinement and H‐Sorption Properties of MgH2 Processed by High‐Pressure Torsion and Other Mechanical Routes | MgH2 is a promising material for solid‐state hydrogen storage due to its high gravimetric and volumetric storage capacity and its relatively low cost. Severe plastic deformation (SPD) processing techniques are being explored as an alternative to high‐energy ball‐milling (HEBM) in order to obtain more air resistant mate... | 2,010 | 79 | null | [
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{
"authorId": "88993183",
"name": "D. Fruchart"
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{
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1d95b37c2314c3da284324e9b60188fbe8aab767 | {
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} | null | https://www.semanticscholar.org/paper/1d95b37c2314c3da284324e9b60188fbe8aab767 | SiO2 Coated Li-rich Layered Oxides-Li1.2Ni0.13Mn0.54Co0.13O2 for efficient energy storage applications | Lithium ion batteries (LIBs) are attractive for energy storage application. In this regard, lithium rich layered oxides (LLOs), are considered viable cathodes due to their tempting properties such as lower production cost, faster manufacturing process, excellent reversible capacity, and better electrochemical performan... | 2,020 | 0 | {
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{
"authorId": "1749858518",
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{
"authorId": "2283576009",
"name": "Umair Nisar"
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{
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"name": "Haya Monawwar"
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{
"authorId": "1712133140",
"name": "A. A. Quddus"
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{
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... | http://qspace.qu.edu.qa/bitstream/10576/16540/1/SiO2%20Coated%20Li-rich%20Layered%20Oxides-Li1.2Ni0.13Mn0.54Co0.13O2%20for%20efficient%20energy%20storage%20applications.pdf | qspace.qu.edu.qa | 638,215 | |
b509fe62b3cd9c4143559e1e6ab70d174e680048 | {
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} | https://www.semanticscholar.org/paper/b509fe62b3cd9c4143559e1e6ab70d174e680048 | Temperature-dependent Growth Mechanism of PVP-based Copper Sulfide (CuS) Nanocomposite | This study focuses on the proficient synthesis of a Copper Sulfide (CuS) nanocomposite using the hydrothermal method at four distinct reaction temperatures: 130°C, 150°C, 170°C, and 200°C, each with a 5-hour duration. Comprehensive characterization through Powder X-ray Diffraction (PXRD), UV-visible spectroscopy (UV-vi... | Journal of Mines, Metals and Fuels | 2,024 | 0 | null | [
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"name": "A. J. Reddy"
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{
"authorId": null,
"name": "Kalpana Sharma"
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] | null | null | 638,593 |
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