说明书附图1示出了失水状态下的根据本发明的一个实施方案的水凝胶的结构,该图的左上角标示了结论Zn:O=1:1.1;附图4a示出了吸附能与水分的英语翻译

说明书附图1示出了失水状态下的根据本发明的一个实施方案的水凝胶的结构,

说明书附图1示出了失水状态下的根据本发明的一个实施方案的水凝胶的结构,该图的左上角标示了结论Zn:O=1:1.1;附图4a示出了吸附能与水分子数的关系、附图4b-4d示出了在向体系中添加不同个水分子时,根据本发明的失水的水凝胶的结构变化,图4a给出了H2O分子数与吸附能的关系,图4b-4d没有示出Zn、O、H的比例关系,但是,对于图1和图4a-4d所示出的结论,说明书中对于获得该结论的实验方法和结论推导过程没有任何文字记载。材料微观结构的确定过程中,测试表征过程和实验结果的分析推导是准确获得结论的重要一环,本申请中获得的为非化学计量的X氧化物,其化学结构具有特殊性,在申请文件未给出实验方式和结论推导过程的情况下,图1和图4a-4d中的结论的真实性无法进行判断。
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结果 (英语) 1: [复制]
复制成功!
Figure 1 of the description shows the structure of a hydrogel according to an embodiment of the present invention in a dehydrated state. The upper left corner of the figure indicates the conclusion Zn:O=1:1.1; Figure 4a shows the adsorption <br><br>energy The relationship between the number of H2O molecules and the number of water molecules. Figures 4b-4d show the structural changes of the dehydrated hydrogel according to the present invention when different water molecules are added to the system. Figure 4a shows the relationship between the number of H2O molecules and adsorption. Energy relationship, Figures 4b-4d do not show the proportional relationship between Zn, O, and H. However, for the conclusions shown in Figures 1 and 4a-4d, the experimental method and conclusion derivation process to obtain this conclusion are not included in the description. Any written records. <br><br>In the process of determining the microstructure of materials, the test characterization process and the analysis and derivation of experimental results are an important part of accurately obtaining conclusions. What is obtained in this application is non-stoichiometric X oxide, and its chemical structure is unique. In the application documents Without providing the experimental method and conclusion derivation process, the authenticity of the conclusions in Figure 1 and Figure 4a-4d cannot be judged.
正在翻译中..
结果 (英语) 2:[复制]
复制成功!
Figure 1 of the Description shows the structure of the hydrogel according to an embodiment of the invention in the water loss state, and the upper left corner of the figure shows the conclusion Zn: O=1:1.1;<br>Fig. 4a shows the relationship between the adsorption energy and the number of water molecules, Fig. 4b-4d shows the structural change of the water losing hydrogel according to the invention when different water molecules are added to the system, Fig. 4a shows the relationship between the number of H2O molecules and the adsorption energy, and Fig. 4b-4d does not show the proportional relationship between Zn, O, H, but for the conclusions shown in Fig. 1 and Fig. 4a-4d, There is no written record in the manual regarding the experimental method and conclusion derivation process for obtaining this conclusion.<br>In the process of determining the microstructure of materials, the process of testing and characterization, as well as the analysis and derivation of experimental results, are important steps in accurately obtaining conclusions. In this application, the obtained non stoichiometric X oxide has a unique chemical structure. In the absence of experimental methods and conclusion derivation processes in the application documents, the authenticity of the conclusions in Figures 1 and 4a-4d cannot be judged.
正在翻译中..
结果 (英语) 3:[复制]
复制成功!
Description Figure 1 shows the structure of hydrogel according to one embodiment of the present invention in a dehydrated state, and the conclusion Zn: O = 1: 1.1 is marked in the upper left corner of the figure;<br> <br> Fig. 4a shows the relationship between adsorption energy and the number of water molecules; figs. 4b-4d show the structural changes of dehydrated hydrogel according to the present invention when different water molecules are added to the system; fig. 4a shows the relationship between the number of H2O molecules and adsorption energy; figs. 4b-4d do not show the proportional relationship of Zn, O and H. However, for the conclusions shown in figs. 1 and 4a-4d, there is no written description of the experimental method and conclusion derivation process in the specification.<br> <br> In the process of determining the microstructure of materials, the test characterization process and the analysis and deduction of experimental results are an important part to accurately obtain conclusions. The non-stoichiometric X oxide obtained in this application has special chemical structure, and the authenticity of the conclusions in Figure 1 and Figure 4a-4d cannot be judged without the experimental method and conclusion deduction process given in the application documents.
正在翻译中..
 
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