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yingxingwang

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The FT-IR results are shown in Fig. 3. The peaks at around 710,530 and 463 cmÀ1 are characteristic of cryptomelane and are in-volved  in  the vibrations  of the MnO6 octahedral framework[12,25,26]. The peak positions for M-OMS-2 slightly shifted to higher wavelength of 712, 530, 469 cm-1  when compared to those of OMS-2.
   Fig. 4 shows the nitrogen adsorption¨Cdesorption isotherms of the catalysts and the specific surface areas of the catalysts are listed in Table 1. It can be seen from Table 1 that the doping of metals has little impact on the surface areas of the M-OMS-2 catalysts.The isotherms show a characteristic of type II isotherm pattern, with a hysteresis loop of type H3 in the IUPAC classification, which is usually associated with the adsorption on aggregates of particles with a layered morphology, forming slit-like pores [27]. The results are similar to those of the reported K-OMS-2 and Ti-OMS-2 [17]. The TEM images of the M-OMS-2 catalysts are shown in Fig. 5(the image of Cr-OMS-2 is shown in Supplementary data, Fig. S2).All the M-OMS-2 catalysts show a rod-like morphology with a length  ranging from 50 to 220 nm and a diameter of about 13 nm. No agglomerated particles corresponding to the doped metal oxide were found.

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¸µÀïÒ¶±ä»»ºìÍâ¹âÆ×½á¹ûÈçͼ3.¶¥µã´óÔ¼ÔÚ710530ºÍ463.1ÊÇÃ̼ؿóµÄÌØÕ÷·å£¬°üº¬ÔÚMnO6°ËÃæÌå½á¹¹ÖС£ M-OMS-2µÄλÖÃÓëOMS-2Ïà±ÈÇá΢µÄÏò712530469Æ«ÒÆ¡£Í¼4ÊÇ´ß»¯¼ÁµªÆøÎü¸½ÍѸ½µÈÎÂÏߣ¬´ß»¯¼ÁµÄ±íÃæ»ýÔÚ±í1.´Ó±í1¿ÉÒÔ¿´³ö½ðÊôÔÓÖʶÔM-OMS-2´ß»¯¼Á±íÃæ»ý¼¸ºõûÓÐÓ°Ïì¡£µÈÎÂÏßÊÇ II Ð͵ÈÎÂÏߣ¬ÓÐÒ»¸öÖÍ»·£¬Õâͨ³£ÓëÎü¸½¼ÁµÄ¾Û¼¯Óйأ¬ÐγÉÀàËÆ¿ÕѨ½á¹¹¡£ÕâÓëK-OMS-2 Ti-OMS-2µÄÎÄÏ×½á¹û±¨µÀÒ»Ö¡£ M-OMS-2´ß»¯¼ÁµÄtemͼƬÔÚ±í5.£¨Cr-OMS-2µÄÕÕÆ¬ÔÚ¸½±í2£©¡£ËùÓеÄM-OMS-2´ß»¯¼ÁÏÔʾ¾ßÓ㤶È50µ½220nmºÍÖ±¾¶13nmµÄ°ô×´ÐÍ̬
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