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根据下列描述制作一个海报“Studying processes in situ using transmission electron microscopy (TEM) has been proven to provide powerful insights into the nano cosmos. This is often achieved by inducing changes in the environment of the specimen by applying external stimuli such as heating and/or altering the surrounding phase of the specimen by introducing liquid or gaseous atmospheres. To do so, the usage of windowed nano-containers in combination with (MEMS-)heating architectures has been spread widely. However, the dynamic processes under study are often highly dependent on the actual temperature T, so that accurate T-control within the irradiated volume itself is crucial for experimental design and interpretation. This is particularly relevant as T can not only be affected by the intended MEMS-heaters, but also by the electron beam itself. Hence, reliable techniques to probe the temperature locally during in situ TEM are required. ”
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根据下列描述制作一个海报“Studying processes in situ using transmission electron microscopy (TEM) has been proven to provide powerful insights into the nano cosmos
.
This is often achieved by inducing changes in the environment of the specimen by applying external stimuli such as heating and/or altering the surrounding phase of the specimen by introducing liquid or gaseous atmospheres
.
To do so
,
the usage of windowed nano-containers in combination with (MEMS-)heating architectures has been spread widely
.
However
,
the dynamic processes under study are often highly dependent on the actual temperature T
,
so that accurate T-control within the irradiated volume itself is crucial for experimental design and interpretation
.
This is particularly relevant as T can not only be affected by the intended MEMS-heaters
,
but also by the electron beam itself
.
Hence
,
reliable techniques to probe the temperature locally during in situ TEM are required
.
”
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