Search Results - "Shi, Xiao‐Lei"
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Advanced Thermoelectric Design: From Materials and Structures to Devices
Published in Chemical reviews (12-08-2020)“…The long-standing popularity of thermoelectric materials has contributed to the creation of various thermoelectric devices and stimulated the development of…”
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Advances in Ionic Thermoelectrics: From Materials to Devices
Published in Advanced energy materials (01-03-2023)“…As an extended member of the thermoelectric family, ionic thermoelectrics (i‐TEs) exhibit exceptional Seebeck coefficients and applicable power factors, and as…”
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Flexible Thermoelectric Materials and Generators: Challenges and Innovations
Published in Advanced materials (Weinheim) (01-07-2019)“…The urgent need for ecofriendly, stable, long‐lifetime power sources is driving the booming market for miniaturized and integrated electronics, including…”
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Advances in Versatile GeTe Thermoelectrics from Materials to Devices
Published in Advanced materials (Weinheim) (01-01-2023)“…Driven by the intensive efforts in the development of high‐performance GeTe thermoelectrics for mass‐market application in power generation and refrigeration,…”
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Biomass‐Derived Carbon for High‐Performance Batteries: From Structure to Properties
Published in Advanced functional materials (01-06-2022)“…Owing to the sustainability, environmental friendliness, and structural diversity of biomass‐derived materials, extensive efforts have been devoted to use them…”
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Flexible thermoelectric materials and devices: From materials to applications
Published in Materials today (Kidlington, England) (01-06-2021)“…[Display omitted] With the ever-growing development of multifunctional and miniature electronics, the exploring of high-power microwatt-milliwatt self-charging…”
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Thermoelectric coolers for on-chip thermal management: Materials, design, and optimization
Published in Materials science & engineering. R, Reports : a review journal (01-10-2022)“…Compared with traditional active cooling methods, thermoelectric coolers are more accessible to be integrated with electronics as an effective thermal…”
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Conducting polymer-based flexible thermoelectric materials and devices: From mechanisms to applications
Published in Progress in materials science (01-08-2021)“…[Display omitted] Conducting polymers have drawn considerable attention in the field of wearable and implantable thermoelectric devices due to their unique…”
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A Solvothermal Synthetic Environmental Design for High‐Performance SnSe‐Based Thermoelectric Materials
Published in Advanced energy materials (01-05-2022)“…SnSe is challenging to use in thermoelectric devices due to difficulties in simultaneously optimizing its thermoelectric and mechanical properties. Here, the…”
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Synergetic Regulation of Oriented Crystallization and Interfacial Passivation Enables 19.1% Efficient Wide‐Bandgap Perovskite Solar Cells
Published in Advanced energy materials (01-09-2022)“…Wide‐bandgap (WBG) perovskite solar cells (PSCs) suffer from severe voltage loss, which significantly limits the enhancement of photovoltaic performance. Here,…”
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High‐Performance Thermoelectric SnSe: Aqueous Synthesis, Innovations, and Challenges
Published in Advanced science (01-04-2020)“…Tin selenide (SnSe) is one of the most promising candidates to realize environmentally friendly, cost‐effective, and high‐performance thermoelectrics, derived…”
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Interstitial Cu: An Effective Strategy for High Carrier Mobility and High Thermoelectric Performance in GeTe
Published in Advanced functional materials (01-06-2023)“…Dense point defects can strengthen phonon scattering to reduce the lattice thermal conductivity and induce outstanding thermoelectric performance in GeTe‐based…”
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Trends in GeTe Thermoelectrics: From Fundamentals to Applications
Published in Advanced functional materials (01-09-2024)“…Germanium telluride (GeTe) with ultrafast ferroelectric transition, Rashba‐like electronic transport, and anomalous phonon anharmonicity are historically…”
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Flexible power generators by Ag2Se thin films with record-high thermoelectric performance
Published in Nature communications (31-01-2024)“…Exploring new near-room-temperature thermoelectric materials is significant for replacing current high-cost Bi 2 Te 3 . This study highlights the potential of…”
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Realizing High Thermoelectric Performance in n‐Type Highly Distorted Sb‐Doped SnSe Microplates via Tuning High Electron Concentration and Inducing Intensive Crystal Defects
Published in Advanced energy materials (25-07-2018)“…In this study, a record high figure of merit (ZT) of ≈1.1 at 773 K is reported in n‐type highly distorted Sb‐doped SnSe microplates via a facile solvothermal…”
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Silver Copper Chalcogenide Thermoelectrics: Advance, Controversy, and Perspective
Published in Advanced materials (Weinheim) (01-09-2024)“…Thermoelectric technology, which enables a direct and pollution‐free conversion of heat into electricity, provides a promising path to address the current…”
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Stable, Self‐Adhesive, and High‐Performance Graphene‐Oxide‐Modified Flexible Ionogel Thermoelectric Films
Published in Advanced functional materials (01-09-2024)“…Ionic thermoelectric materials have attracted increasing attention because of their high flexibility and high Seebeck coefficient. However, their insufficient…”
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High Carrier Mobility and High Figure of Merit in the CuBiSe2 Alloyed GeTe
Published in Advanced energy materials (01-12-2021)“…According to the Mott's relation, the figure‐of‐merit of a thermoelectric material depends on the charge carrier concentration and carrier mobility. This…”
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Hierarchical Architectural Structures Induce High Performance in n‐Type GeTe‐Based Thermoelectrics
Published in Advanced functional materials (01-04-2023)“…Compatible p‐ and n‐type materials are necessary for high‐performance GeTe thermoelectric modules, where the n‐type counterparts are in urgent need. Here, it…”
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Rational Electronic and Structural Designs Advance BiCuSeO Thermoelectrics
Published in Advanced functional materials (01-06-2021)“…In this work, a record high thermoelectric figure‐of‐merit ZT of 1.6 ± 0.2 at 873 K in p‐type polycrystalline Bi0.94Pb0.06CuSe1.01O0.99 by a synergy of…”
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