[1]孫蘭,張龍,馬飛.過渡金屬硫族化合物二維晶體基復(fù)合材料的研究進(jìn)展[J].中國材料進(jìn)展,2017,(1):026-30.[doi:10.7502/j.issn.1674-3962.2017.01.06]
SUN Lan,ZHANG Long,MA Fei.Research Progress of Two-dimensional Transition Metal Dichalcogenide-based Composites[J].MATERIALS CHINA,2017,(1):026-30.[doi:10.7502/j.issn.1674-3962.2017.01.06]
點擊復(fù)制
過渡金屬硫族化合物二維晶體基復(fù)合材料的研究進(jìn)展(
)
中國材料進(jìn)展[ISSN:1674-3962/CN:61-1473/TG]
- 卷:
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- 期數(shù):
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2017年第1期
- 頁碼:
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026-30
- 欄目:
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前沿綜述
- 出版日期:
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2017-01-31
文章信息/Info
- Title:
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Research Progress of Two-dimensional Transition Metal Dichalcogenide-based Composites
- 作者:
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孫蘭; 張龍; 馬飛
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西安交通大學(xué)
- Author(s):
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SUN Lan; ZHANG Long; MA Fei
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Xi’an Jiaotong University
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- 關(guān)鍵詞:
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二維材料; 過渡金屬硫族化合物; 復(fù)合結(jié)構(gòu); 耦合效應(yīng)
- Keywords:
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two-dimensional materials; transition metal dichalcogenide (TMDs); composites; interface coupling
- DOI:
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10.7502/j.issn.1674-3962.2017.01.06
- 文獻(xiàn)標(biāo)志碼:
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A
- 摘要:
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石墨烯的發(fā)現(xiàn)掀起了人們對二維晶體材料的探索熱潮。單層或少數(shù)層過渡金屬硫族化合物(TMDs)是二維晶體材料的典型代表,此類材料的帶隙合適、電子遷移率和熱導(dǎo)率高、光吸收強、比表面積大,在新型光電器件、光/電催化、鋰離子電池電極、氣體傳感及生物醫(yī)學(xué)等領(lǐng)域蘊藏著巨大的應(yīng)用潛能。特別是,對于TMDs二維晶體與其他材料復(fù)合而成的納米結(jié)構(gòu),強烈的界面耦合作用對材料物理和化學(xué)特性的調(diào)控至關(guān)重要,甚至可能導(dǎo)致新奇特性,預(yù)示著新功能和新應(yīng)用。本論文詳細(xì)綜述了TMDs二維晶體基復(fù)合材料的制備方法、結(jié)構(gòu)與性能的界面調(diào)控及其潛在應(yīng)用,并指出了該研究領(lǐng)域仍存在的問題及未來發(fā)展方向。
- Abstract:
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The discovery of graphene promotes the exploration of two-dimensional (2D) materials. Single-layer or few-layer transition metal dichalcogenides (TMDs) are the representative ones, and they exhibit enormous potential applications in many high-tech fields, such as, electronic devices, photo/electro-catalysis, batteries, sensors, and so on, owing to adjustable band gap, high electron mobility and thermal conductivity, strong light absorption and large specific surface area. Especially, as for the TMDs-based 2D composites, the strong interfacial coupling is crucial to optimize their physical and chemical properties, which even induces novel properties and generates new functions for practical applications. The fabrication methods, interfacial coupling effects and applications are systematically summarized and discussed. Accordingly, the challenges and opportunities in this promising research area are also presented.
更新日期/Last Update:
2016-12-26