氮化硼能使石墨烯的电子特性发生剧变
文章来源:未知 文章作者:enread 发布时间:2014-06-03 06:07 字体: [ ]  进入论坛
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Writing in Nature Physics, a large international team led by Dr Artem Mishchenko and Sir Andre Geim from The University of Manchester shows that the electronic properties of graphene change dramatically if graphene is placed on top of boron nitride(氮化硼), also known as 'white graphite'. One of the major challenges for using graphene in electronics applications is the absence of a band gap, which basically means that graphene's electrical conductivity cannot be switched off completely. Whatever researchers tried to do with the material so far, it remained highly electrically conductive.
 
A new direction that has recently emerged in graphene research is to try to modify graphene's electronic properties by combining it with other similar materials in multilayered stacks. This creates an additional landscape for electrons moving through graphene and, therefore, its electronic properties can change strongly.
 
The University of Manchester scientists have used capacitance measurements to probe these changes. They found that in combination with a magnetic field this creates numerous replicas2(复制品) of the original graphene spectrum3. This phenomenon is known as the Hofstadter butterfly but it is the first time that well developed replica1 spectra4 have been observed.
 
The researchers found a wealth of unexpected physics in this new system. For example, the Hofstadter butterflies turned out to be strongly contorted, very different from the theoretical predictions. This happens because electrons feel not only the landscape but also each other, which modifies the butterfly.
 
Another phenomenon that the Manchester paper reports is that graphene starts behaving at very low temperatures like a tiny ferromagnet(铁磁物质). Usually, the higher the magnetic field, the more magnetic graphene become. The Hofstadter butterfly in Manchester's capacitors leads to an unexpected oscillating behaviour of the ferromagnetism5. As new replica spectra emerge and disappear, so does the ferromagnetism.
 
Dr Mishchenko said: "It is really a new nice electronic system both similar to and different from graphene. We expect many more surprises. Let us first understand what it is and then we start talking about possible applications."


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1 replica 9VoxN     
n.复制品
参考例句:
  • The original conservatory has been rebuilt in replica.温室已按原样重建。
  • The young artist made a replica of the famous painting.这位年轻的画家临摹了这幅著名的作品。
2 replicas 3b4024e8d65041c460d20d6a2065f3bd     
n.复制品( replica的名词复数 )
参考例句:
  • His hobby is building replicas of cars. 他的爱好是制作汽车的复制品。 来自《简明英汉词典》
  • The replicas are made by using a thin film of fusible alloy on a stiffening platen. 复制是用附着在加强托板上的可熔合金薄膜实现的。 来自辞典例句
3 spectrum Trhy6     
n.谱,光谱,频谱;范围,幅度,系列
参考例句:
  • This is a kind of atomic spectrum.这是一种原子光谱。
  • We have known much of the constitution of the solar spectrum.关于太阳光谱的构成,我们已了解不少。
4 spectra RvCwh     
n.光谱
参考例句:
  • The infra-red spectra of quinones present a number of interesting features. 醌类的红外光谱具有一些有趣的性质。
  • This relation between the frequency and the field spectra was noted experimentally. 实验上已经发现频率和场频谱之间的这种关系。
5 ferromagnetism 6d3f1451357471f74db1dda7c74efd1b     
n.铁磁性
参考例句:
  • The physical origin of the ferromagnetism and antiferromagnetism was explained. 对材料产生铁磁性和反铁磁性的物理根源进行解释。 来自互联网
  • We ferromagnetism in carbon-doped ZnO. 我们提出碳掺杂氧化锌具有铁磁性。 来自互联网
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