“…Entering the 21st century, the rapid development of communication technology has significantly improved people's lives, but it has also invisibly generated a lot of electromagnetic radiation, which is a problem that we need to pay attention to. 1–3 The key to solving this problem is to prevent or minimize the propagation of electromagnetic waves (EMW) in space. One method is to use materials with good absorption properties to absorb EMW, while another method is to use electromagnetic shielding materials to reflect or transfer EMW.…”
The minimum RL value for the Ni2P@MOF in the graph is −27 dB, with an effective absorption rate of 90% and an effective bandwidth of 6 GHz. Thus, it emerges as a high-performance absorbing material with significant potential applications.
“…Entering the 21st century, the rapid development of communication technology has significantly improved people's lives, but it has also invisibly generated a lot of electromagnetic radiation, which is a problem that we need to pay attention to. 1–3 The key to solving this problem is to prevent or minimize the propagation of electromagnetic waves (EMW) in space. One method is to use materials with good absorption properties to absorb EMW, while another method is to use electromagnetic shielding materials to reflect or transfer EMW.…”
The minimum RL value for the Ni2P@MOF in the graph is −27 dB, with an effective absorption rate of 90% and an effective bandwidth of 6 GHz. Thus, it emerges as a high-performance absorbing material with significant potential applications.
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