Interplay of Nanoscale Physical Properties in 2D Materials and Heterostructures
暫譯: 二維材料與異質結構中納米尺度物理性質的相互作用

Gonzalez-Munoz, Sergio

  • 出版商: Springer
  • 出版日期: 2026-02-03
  • 售價: $6,970
  • 貴賓價: 9.5$6,621
  • 語言: 英文
  • 頁數: 210
  • 裝訂: Hardcover - also called cloth, retail trade, or trade
  • ISBN: 3032142709
  • ISBN-13: 9783032142702
  • 相關分類: 奈米科技 Nano
  • 海外代購書籍(需單獨結帳)

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商品描述

In this book, the limited understanding of the local thermal, mechanical and thermoelectric properties of two-dimensional (2D) materials is addressed through the development of advanced scanning probe microscopy (SPM) techniques specifically designed to quantify these nanoscale physical phenomena. The increased research focus on 2D systems, initiated by the Nobel Prize-winning discovery of graphene, has driven a substantial expansion of the field into new materials, heterostructures and unique physical features, with research output growing exponentially each year. Yet, despite the extensive progress in exploring their electronic characteristics, equally significant properties such as thermal transport, mechanical response and thermoelectric behavior remain comparatively underexplored. This knowledge gap arises largely from the lack of experimental methodologies capable of accurately probing atomically thin layers and nanoscale domains. By introducing novel SPM approaches and refined analytical and numerical models, this book provides the means to perform direct, quantitative measurements of these properties and to study their complex interactions, i.e., thermoelectric, thermomechanical and electromechanical phenomena, at an unprecedented level of precision. The combination of experimental innovation and theoretical modeling reported here enables the discovery of new physical characteristics and material behaviors that extend the boundaries of 2D material science. Altogether, this work offers a comprehensive and detailed study of the experimental methods, modeling principles and resulting breakthroughs, becoming an essential resource for academic and industrial researchers exploring the fundamental understanding and application of 2D materials and their heterostructures.

商品描述(中文翻譯)

在本書中,針對二維(2D)材料的局部熱、機械和熱電特性有限的理解,通過開發專門設計的先進掃描探針顯微術(SPM)技術來解決,這些技術旨在量化這些納米尺度的物理現象。自從諾貝爾獎得主發現石墨烯以來,對2D系統的研究重點不斷增加,這推動了該領域向新材料、異質結構和獨特物理特徵的實質性擴展,研究產出每年以指數增長。然而,儘管在探索其電子特性方面取得了廣泛進展,但熱傳輸、機械響應和熱電行為等同樣重要的特性仍然相對未被充分探索。這一知識差距主要源於缺乏能夠準確探測原子薄層和納米尺度區域的實驗方法。通過引入新穎的SPM方法以及精煉的分析和數值模型,本書提供了直接、定量測量這些特性的方法,並研究它們的複雜相互作用,即熱電、熱機械和電機械現象,以前所未有的精確度。這裡報告的實驗創新和理論建模的結合,使得發現新的物理特性和材料行為成為可能,擴展了2D材料科學的邊界。總體而言,本書提供了對實驗方法、建模原則和所取得突破的全面而詳細的研究,成為學術界和工業界研究者探索2D材料及其異質結構的基本理解和應用的重要資源。

作者簡介

Sergio Gonzalez-Munoz is Postdoctoral Fellow in the School of Materials Science and Engineering at the Georgia Institute of Technology, where he studies the optomechanical properties of cellulose nanocrystals and MXene thin films. He earned his Ph.D. in physics from Lancaster University in 2024 under the supervision of Oleg V. Kolosov, focusing on the development of advanced scanning probe microscopy techniques to characterize thermal, thermoelectric and nanomechanical phenomena in two-dimensional materials. Sergio completed his B.Eng. in mechanical engineering at the University of Lleida in 2018, completing a thesis project on robotics. He later obtained his M.Sc. in advanced nanoscience and nanotechnology from the Autonomous University of Barcelona, conducting research on graphene-based neural interfaces supervised by Jose A. Garrido. His scientific contributions have led to multiple conference presentations and six journal publications, including articles in Nature Communications, Advanced Functional Materials and Advanced Materials Interfaces. He received the Lancaster University Physics Department 2023 Award for exceptional contribution to high impact publications and the E-MRS 2023 Young Scientist Award. Outside the lab, Sergio enjoys photography, basketball, football, and hiking.

作者簡介(中文翻譯)

Sergio Gonzalez-Munoz 是喬治亞理工學院材料科學與工程學院的博士後研究員,他研究纖維素奈米晶體和 MXene 薄膜的光機械特性。他於 2024 年在蘭卡斯特大學獲得物理學博士學位,指導教授為 Oleg V. Kolosov,研究重點是開發先進的掃描探針顯微技術,以表徵二維材料中的熱、熱電和奈米機械現象。Sergio 於 2018 年在萊里達大學獲得機械工程學士學位,並完成了一個關於機器人的論文專案。之後,他在巴薩隆納自治大學獲得先進奈米科學與奈米技術碩士學位,進行了以石墨烯為基礎的神經介面的研究,指導教授為 Jose A. Garrido。他的科學貢獻使他在多個會議上發表演講,並發表了六篇期刊文章,包括在《Nature Communications》、《Advanced Functional Materials》和《Advanced Materials Interfaces》上的文章。他因對高影響力出版物的卓越貢獻而獲得蘭卡斯特大學物理系 2023 年獎和 E-MRS 2023 年青年科學家獎。在實驗室之外,Sergio 喜歡攝影、籃球、足球和健行。