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Synthesis,formation mechanism and electric property of hollow InP nanospheres
Authors:Lin Wang  Heqing Yang  Hua Zhao  Ru Yu Shi  Liu Bao  Bin Liu
Affiliation:(1) Institute of Physics, National Competence Center for Research in Nanoscale Science (NCCR) Basel, University of Basel, Klingelbergstr. 82, 4056 Basel, Switzerland;(2) School of Physics, CRANN – The Naughton Institute Trinity College, University of Dublin, 2 Dublin, Ireland;(3) Institute of Physics National Competence Center for Research in Nanoscale Science (NCCR) Basel, University of Basel, Klingelbergstr. 82, 4056 Basel, Switzerland
Abstract:The present work reports on novel four-layer thermally driven piezoresistive cantilevers implemented in one- and two-dimensional arrays for parallel proximity scanning. There, the heater (metallic meander), the piezoresistive deflection sensor, and the metal actuation film with significantly higher thermal expansion coefficient make up separate layers. Actuation efficiency and cross-talk of the novel cantilever design are studied and compared with two recent designs: thin metallic film and ion-implanted heater. The novel actuator, integrated on a 240 μm long and 3 μm thick silicon cantilever and supplied by V dc=1 V enables deflections up to 5 μm of the AFM-tip with an actuation efficiency of about 170 nm/mW and suppressed cross-talk between actuator and sensor.
Keywords:
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